Nanostructured electrodes for electrocatalytic advanced oxidation processes: From materials preparation to mechanisms understanding and wastewater treatment applications
暂无分享,去创建一个
Ming-hua Zhou | M. Oturan | E. Mousset | Clément Trellu | Jingju Cai | Xuedong Du | P. Su | Nacer Belkessa
[1] M. Oturan,et al. Electrochemical technologies coupled with biological treatments , 2021 .
[2] M. Oturan,et al. Electrochemical technologies for the treatment of pesticides , 2021, Current Opinion in Electrochemistry.
[3] Ming-hua Zhou,et al. Anodic oxidation of organic pollutants: Anode fabrication, process hybrid and environmental applications , 2021 .
[4] M. Oturan,et al. Pilot scale continuous reactor for water treatment by electrochemical advanced oxidation processes: Development of a new hydrodynamic/reactive combined model , 2021, Chemical Engineering Journal.
[5] K. Zhou,et al. Ordered structures with functional units (OSFU) enabled highly robust diamond anode for electrochemical decomposing of organic pollutants , 2020 .
[6] O. Arotiba,et al. Cu2O as an emerging semiconductor in photocatalytic and photoelectrocatalytic treatment of water contaminated with organic substances: a review , 2020, RSC advances.
[7] E. Mousset,et al. Electrochemical treatment of highly concentrated wastewater: A review of experimental and modeling approaches from lab- to full-scale , 2020, Critical Reviews in Environmental Science and Technology.
[8] E. Mousset. Unprecedented reactive electro-mixing reactor: Towards synergy between micro- and macro-reactors? , 2020 .
[9] M. Bechelany,et al. Coupling cathodic electro-fenton with anodic photo-electrochemical oxidation: A feasibility study on the mineralization of paracetamol , 2020, Journal of Environmental Chemical Engineering.
[10] E. Mousset,et al. A review of electrochemical reduction processes to treat oxidized contaminants in water , 2020 .
[11] Sovik Das,et al. Production of Hydrogen Peroxide Using Various Metal-Based Catalysts in Electrochemical and Bioelectrochemical Systems: Mini Review , 2020 .
[12] Ming-hua Zhou,et al. Enhancement of hydrogen peroxide production by electrochemical reduction of oxygen on carbon nanotubes modified with fluorine. , 2020, Chemosphere.
[13] D. Dionysiou,et al. Photoelectrochemical reactors for treatment of water and wastewater: a review , 2020, Environmental Chemistry Letters.
[14] P. Cañizares,et al. Improvement of electrochemical oxidation efficiency through combination with adsorption processes. , 2020, Journal of environmental management.
[15] F. Roland,et al. Global CO2 emissions from dry inland waters share common drivers across ecosystems , 2020, Nature Communications.
[16] R. Soltani,et al. In-situ electro-generation and activation of hydrogen peroxide using a CuFeNLDH-CNTs modified graphite cathode for degradation of cefazolin. , 2020, Journal of Environmental Management.
[17] Sergi Garcia-Segura,et al. Benchmarking recent advances and innovative technology approaches of Fenton, photo-Fenton, electro-Fenton, and related processes: A review on the relevance of phenol as model molecule , 2020 .
[18] Yanchun Li,et al. Highly efficient electrosynthesis of hydrogen peroxide on a superhydrophobic three-phase interface by natural air diffusion , 2020, Nature Communications.
[19] M. A. Sanromán,et al. Iron-doped cathodes for electro-Fenton implementation: Application for pymetrozine degradation , 2020, Electrochimica Acta.
[20] Dustin K. James,et al. Laser-induced graphene and carbon nanotubes as conductive carbon-based materials in environmental technology , 2020 .
[21] O. Arotiba,et al. Towards visible light driven photoelectrocatalysis for water treatment: Application of a FTO/BiVO4/Ag2S heterojunction anode for the removal of emerging pharmaceutical pollutants , 2020, Scientific Reports.
[22] J. Pinson,et al. Effect of cathode material on electro-Fenton process efficiency for electrocatalytic mineralization of the antibiotic sulfamethazine , 2020 .
[23] Yongyou Hu,et al. Enhanced degradation of triclosan in heterogeneous E-Fenton process with MOF-derived hierarchical Mn/Fe@PC modified cathode , 2020 .
[24] M. Bechelany,et al. Highly efficient and stable FeIIFeIII LDH carbon felt cathode for removal of pharmaceutical ofloxacin at neutral pH. , 2020, Journal of hazardous materials.
[25] P. Nidheesh,et al. Importance of Graphene in the Electro-Fenton Process , 2020, ACS omega.
[26] O. Arotiba,et al. Solar-Light-Responsive Titanium-Sheet-Based Carbon Nanoparticles/B-BiVO4/WO3 Photoanode for the Photoelectrocatalytic Degradation of Orange II Dye Water Pollutant , 2020, ACS omega.
[27] Ming-hua Zhou,et al. Electrocatalytic generation of homogeneous and heterogeneous hydroxyl radicals for cold mineralization of anti-cancer drug Imatinib , 2020 .
[28] Limin Chang,et al. Surface characterization and electrochemical properties of PbO2/SnO2 composite anodes for electrocatalytic oxidation of m-nitrophenol , 2020, Electrochimica Acta.
[29] Christine Nicole Schondek,et al. Effect of homogeneous Fenton combined with electron transfer on the fate of inorganic chlorinated species in synthetic and reclaimed municipal wastewater , 2020 .
[30] N. Ren,et al. Construction of TiO2 nanotube clusters on Ti mesh for immobilizing Sb-SnO2 to boost electrocatalytic phenol degradation. , 2020, Journal of hazardous materials.
[31] E. Brillas. A review on the photoelectro-Fenton process as efficient electrochemical advanced oxidation for wastewater remediation. Treatment with UV light, sunlight, and coupling with conventional and other photo-assisted advanced technologies. , 2020, Chemosphere.
[32] M. A. Sanromán,et al. Coupling electro-Fenton process to a biological treatment, a new methodology for the removal of ionic liquids? , 2020 .
[33] A. Lin,et al. Photoelectrochemical degradation of perfluorooctanoic acid (PFOA) with GOP25/FTO anodes: Intermediates and reaction pathways. , 2020, Journal of hazardous materials.
[34] Yu Chen,et al. N,F-Codoped Carbon Nanocages: An Efficient Electrocatalyst for Hydrogen Peroxide Electroproduction in Alkaline and Acidic Solutions , 2020 .
[35] Ming-hua Zhou,et al. Solar photoelectrocatalytic degradation of ciprofloxacin at a FTO/BiVO4/MnO2 anode: Kinetics, intermediate products and degradation pathway studies , 2020 .
[36] P. Cabot,et al. Expanding the application of photoelectro-Fenton treatment to urban wastewater using the Fe(III)-EDDS complex. , 2020, Water research.
[37] Mingheng Li,et al. Hydrothermal Synthesis of Nanomaterials , 2020, Journal of Nanomaterials.
[38] Katherina Changanaqui,et al. ZnO/TiO2/Ag2Se nanostructures as photoelectrocatalysts for the degradation of oxytetracycline in water , 2020 .
[39] C. Vecitis,et al. Synergism of ozonation and electrochemical filtration during advanced organic oxidation. , 2020, Journal of hazardous materials.
[40] Ming-hua Zhou,et al. Photoelectrochemical degradation of 2,4-dichlorophenoxyacetic acid using electrochemically self-doped Blue TiO2 nanotube arrays with formic acid as electrolyte. , 2020, Journal of hazardous materials.
[41] Junhua Jiang,et al. Review—Electrolytic Metal Atoms Enabled Manufacturing of Nanostructured Sensor Electrodes , 2020, Journal of The Electrochemical Society.
[42] Ming-hua Zhou,et al. Degradation of 2,4-dichlorophenoxyacetic acid by anodic oxidation and electro-Fenton using BDD anode: Influencing factors and mechanism , 2020 .
[43] O. Sliusarenko,et al. Editors' Choice—Review—Nanostructured Electrodes as Random Arrays of Active Sites: Modeling and Theoretical Characterization , 2020, 2007.14482.
[44] Li Xu,et al. Hydrothermal synthesis of 3D hierarchically flower-like structure Ti/SnO2-Sb electrode with long service life and high electrocatalytic performance , 2019 .
[45] Ki‐Hyun Kim,et al. A review of functional sorbents for adsorptive removal of arsenic ions in aqueous systems. , 2019, Journal of hazardous materials.
[46] L. Tao,et al. High yield of hydrogen peroxide on modified graphite felt electrode with nitrogen-doped porous carbon carbonized by zeolitic imidazolate framework-8 (ZIF-8) nanocrystals. , 2019, Environmental pollution.
[47] W. Sand,et al. Rapid decontamination of tetracycline hydrolysis product using electrochemical CNT filter: Mechanism, impacting factors and pathways. , 2019, Chemosphere.
[48] D. Wilkinson,et al. Application of boron-doped diamond electrodes for the anodic oxidation of pesticide micropollutants in a water treatment process: a critical review , 2019, Environmental Science: Water Research & Technology.
[49] Limin Chang,et al. Fabrication of PbO2/SnO2 composite anode for electrochemical degradation of 3-chlorophenol in aqueous solution , 2019, Applied Surface Science.
[50] Ming-hua Zhou,et al. Extremely efficient electrochemical degradation of organic pollutants with co-generation of hydroxyl and sulfate radicals on Blue-TiO2 nanotubes anode , 2019, Applied Catalysis B: Environmental.
[51] M. Oturan,et al. A review on efficiency and cost effectiveness of electro- and bio-electro-Fenton processes: Application to the treatment of pharmaceutical pollutants in water , 2019, Chemical Engineering Journal.
[52] B. Ayati,et al. Acid Orange 7 treatment and fate by electro-peroxone process using novel electrode arrangement. , 2019, Chemosphere.
[53] Ming-hua Zhou,et al. High-efficiency electrogeneration of hydrogen peroxide from oxygen reduction by carbon xerogels derived from glucose , 2019, Electrochimica Acta.
[54] Cong Zhang,et al. Titanium‑boron doped diamond composite: A new anode material , 2019, Diamond and Related Materials.
[55] P. Guan,et al. A direct H2O2 production based on hollow porous carbon sphere-sulfur nanocrystal composites by confinement effect as oxygen reduction electrocatalysts , 2019, Nano Research.
[56] Yifeng Zhang,et al. Two-electron oxygen reduction on fullerene C60-carbon nanotubes covalent hybrid as a metal-free electrocatalyst , 2019, Scientific Reports.
[57] Ming-hua Zhou,et al. A carbon nanotube-confined iron modified cathode with prominent stability and activity for heterogeneous electro-Fenton reactions , 2019, Journal of Materials Chemistry A.
[58] George Z. Tan,et al. Kinetic, mechanism and mass transfer impact on electrochemical oxidation of MIT using Ti-enhanced nanotube arrays/SnO2-Sb anode , 2019, Electrochimica Acta.
[59] Gaurav Vats,et al. Mutual Insight on Ferroelectrics and Hybrid Halide Perovskites: A Platform for Future Multifunctional Energy Conversion , 2019, Advanced materials.
[60] C. Vecitis,et al. Insights into estrogenic activity removal using carbon nanotube electrochemical filter. , 2019, The Science of the total environment.
[61] Yonggang Zhang,et al. Highly selective two-electron oxygen reduction to generate hydrogen peroxide using graphite felt modified with N-doped graphene in an electro-Fenton system , 2019, New Journal of Chemistry.
[62] M. Ranjbar,et al. Heterogeneous Electro-Fenton Process by MWCNT-Ce/WO3 Nanocomposite Modified GF Cathode for Catalytic Degradation of BTEX: Process Optimization Using Response Surface Methodology , 2019, Electrocatalysis.
[63] W. Sand,et al. A chloride-radical-mediated electrochemical filtration system for rapid and effective transformation of ammonia to nitrogen. , 2019, Chemosphere.
[64] E. Brillas,et al. A hybrid photoelectrocatalytic/photoelectro-Fenton treatment of Indigo Carmine in acidic aqueous solution using TiO2 nanotube arrays as photoanode , 2019, Journal of Electroanalytical Chemistry.
[65] Aimin Li,et al. Self-doped TiO2 nanotube arrays for electrochemical mineralization of phenols. , 2019, Chemosphere.
[66] S. C. Perry,et al. Electrochemical synthesis of hydrogen peroxide from water and oxygen , 2019, Nature Reviews Chemistry.
[67] Yunbai Luo,et al. Electrochemical degradation of dye on TiO2 nanotube array constructed anode. , 2019, Chemosphere.
[68] C. Davatzikos,et al. Arterial Spin Labeling and Dynamic Susceptibility Contrast-enhanced MR Imaging for evaluation of arteriovenous shunting and tumor hypoxia in glioblastoma , 2019, Scientific Reports.
[69] M. Pons,et al. Advanced Electro‐Oxidation with Boron‐Doped Diamond for Acetaminophen Removal from Real Wastewater in a Microfluidic Reactor: Kinetics and Mass‐Transfer Studies , 2019, ChemElectroChem.
[70] Wei Yan,et al. Electrochemical oxidation of rhodamine B by PbO2/Sb-SnO2/TiO2 nanotube arrays electrode , 2019, Chinese Journal of Catalysis.
[71] H. Salari. Kinetics and mechanism of enhanced photocatalytic activity under visible light irradiation using Cr2O3/Fe2O3 nanostructure derived from bimetallic metal organic framework , 2019, Journal of Environmental Chemical Engineering.
[72] J. Niu,et al. High-efficiency electrochemical degradation of antiviral drug abacavir using a penetration flux porous Ti/SnO2-Sb anode. , 2019, Chemosphere.
[73] A. Alshawabkeh,et al. Hydrogen peroxide generation from O2 electroreduction for environmental remediation: A state-of-the-art review. , 2019, Chemosphere.
[74] B. McCloskey,et al. Mechanisms of Two-Electron and Four-Electron Electrochemical Oxygen Reduction Reactions at Nitrogen-Doped Reduced Graphene Oxide , 2019, ACS Catalysis.
[75] K. Zhou,et al. 3D macroporous boron-doped diamond electrode with interconnected liquid flow channels: A high-efficiency electrochemical degradation of RB-19 dye wastewater under low current , 2019, Applied Catalysis B: Environmental.
[76] Ming-hua Zhou,et al. Electrochemical catalytic mechanism of N-doped graphene for enhanced H2O2 yield and in-situ degradation of organic pollutant , 2019, Applied Catalysis B: Environmental.
[77] C. Martínez-Huitle,et al. Nature, Mechanisms and Reactivity of Electrogenerated Reactive Species at Thin‐Film Boron‐Doped Diamond (BDD) Electrodes During Electrochemical Wastewater Treatment , 2019, ChemElectroChem.
[78] Yue Lin,et al. Application of Graphene and Carbon Nanotubes on Carbon Felt Electrodes for the Electro-Fenton System , 2019, Materials.
[79] Yan Xia,et al. Electrogeneration of hydrogen peroxide using phosphorus-doped carbon nanotubes gas diffusion electrodes and its application in electro-Fenton , 2019, Journal of Electroanalytical Chemistry.
[80] K. Bouzek,et al. Cost-efficient improvement of coking wastewater biodegradability by multi-stages flow through peroxi-coagulation under low current load. , 2019, Water research.
[81] A. Khataee,et al. Two-electron oxygen reduction on NiFe alloy enclosed carbonic nanolayers derived from NiFe-metal-organic frameworks , 2019, Journal of Electroanalytical Chemistry.
[82] Yali Ma,et al. Dual electrochemical catalysis of Bi2Mo3O12/Ti cathode for hydrogen peroxide production in electro-Fenton system , 2019, Journal of Catalysis.
[83] Ming-hua Zhou,et al. Simultaneous removal of tetracycline and disinfection by a flow-through electro-peroxone process for reclamation from municipal secondary effluent. , 2019, Journal of hazardous materials.
[84] M. Oturan,et al. Environmental Applications of Boron‐Doped Diamond Electrodes: 1. Applications in Water and Wastewater Treatment , 2019, ChemElectroChem.
[85] Wenping Hu,et al. Enhanced catalytic degradation by using RGO-Ce/WO3 nanosheets modified CF as electro-Fenton cathode: Influence factors, reaction mechanism and pathways. , 2019, Journal of hazardous materials.
[86] P. Cañizares,et al. Towards the scale up of a pressurized-jet microfluidic flow-through reactor for cost-effective electro-generation of H2O2 , 2019, Journal of Cleaner Production.
[87] Ming-hua Zhou,et al. Enhanced activation of hydrogen peroxide using nitrogen doped graphene for effective removal of herbicide 2,4-D from water by iron-free electrochemical advanced oxidation , 2019, Electrochimica Acta.
[88] Chao Qu,et al. Simultaneous electro-oxidation and in situ electro-peroxone process for the degradation of refractory organics in wastewater. , 2019, Journal of hazardous materials.
[89] Zhen Yang,et al. Morphological and chemical tuning of lead halide perovskite mesocrystals as long-life anode materials in lithium-ion batteries , 2019, CrystEngComm.
[90] J. Casado. Towards industrial implementation of Electro-Fenton and derived technologies for wastewater treatment: A review , 2019, Journal of Environmental Chemical Engineering.
[91] H. Akrout,et al. Highly efficient modified lead oxide electrode using a spin coating/electrodeposition mode on titanium for electrochemical treatment of pharmaceutical pollutant. , 2019, Chemosphere.
[92] C. Causserand,et al. Efficiency of plasma elaborated sub-stoichiometric titanium oxide (Ti4O7) ceramic electrode for advanced electrochemical degradation of paracetamol in different electrolyte media , 2019, Separation and Purification Technology.
[93] Jianxin Mao,et al. Preparation of size-controlled Pt supported on Al2O3 nanocatalysts for deep catalytic oxidation of benzene at lower temperature , 2019, Applied Surface Science.
[94] C. Roth,et al. Front Cover: Comparison of Electrospun Carbon−Carbon Composite and Commercial Felt for Their Activity and Electrolyte Utilization in Vanadium Redox Flow Batteries (ChemElectroChem 1/2019) , 2018, ChemElectroChem.
[95] Yujing Wang,et al. Construction of a bifunctional electrode interface for efficient electrochemical mineralization of recalcitrant pollutants , 2018, Applied Catalysis B: Environmental.
[96] Ming-hua Zhou,et al. Degradation and mechanism of 2,4-dichlorophenoxyacetic acid (2,4-D) by thermally activated persulfate oxidation. , 2018, Chemosphere.
[97] S. Mehraeen,et al. The roles of oxygen vacancies, electrolyte composition, lattice structure, and doping density on the electrochemical reactivity of Magnéli phase TiO2 anodes , 2018 .
[98] Ming-hua Zhou,et al. Graphene-Based Nanostructured Materials for Advanced Electrochemical Water/Wastewater Treatment , 2018, Polymeric and Nanostructured Materials.
[99] T. Asefa,et al. Heteroatom‐Doped Carbon Materials for Hydrazine Oxidation , 2018, Advanced materials.
[100] L. Escobar-Alarcón,et al. Microwave-assisted sol-gel synthesis of an Au-TiO2 photoanode for the advanced oxidation of paracetamol as model pharmaceutical pollutant , 2018, Electrochemistry Communications.
[101] M. Lanza,et al. Simultaneous degradation of hexazinone and diuron using ZrO2-nanostructured gas diffusion electrode , 2018, Chemical Engineering Journal.
[102] C. Martínez-Huitle,et al. Heterogeneous electro-Fenton and photoelectro-Fenton processes: A critical review of fundamental principles and application for water/wastewater treatment , 2018, Applied Catalysis B: Environmental.
[103] Shen-ming Chen,et al. Ultrathin Sulfur-Doped Graphitic Carbon Nitride Nanosheets As Metal-Free Catalyst for Electrochemical Sensing and Catalytic Removal of 4-Nitrophenol , 2018, ACS Sustainable Chemistry & Engineering.
[104] Bin Wang,et al. Efficient Metal‐Free Electrocatalysts from N‐Doped Carbon Nanomaterials: Mono‐Doping and Co‐Doping , 2018, Advanced materials.
[105] Marco Panizza,et al. Electrochemical oxidation of organic pollutants for wastewater treatment , 2018, Current Opinion in Electrochemistry.
[106] E. Mousset,et al. Advanced electrocatalytic pre-treatment to improve the biodegradability of real wastewater from the electronics industry - A detailed investigation study. , 2018, Journal of hazardous materials.
[107] G. Esposito,et al. Electrochemical mineralization of sulfamethoxazole over wide pH range using FeIIFeIII LDH modified carbon felt cathode: Degradation pathway, toxicity and reusability of the modified cathode , 2018, Chemical Engineering Journal.
[108] Jun Huang,et al. The electro-peroxone process for the abatement of emerging contaminants: Mechanisms, recent advances, and prospects. , 2018, Chemosphere.
[109] Lianjun Wang,et al. Electrochemical oxidation of pyrrole, pyrazole and tetrazole using a TiO2 nanotubes based SnO2-Sb/3D highly ordered macro-porous PbO2 electrode , 2018, Journal of Electroanalytical Chemistry.
[110] Micah J. Green,et al. High-yield scalable graphene nanosheet production from compressed graphite using electrochemical exfoliation , 2018, Scientific Reports.
[111] Ming-hua Zhou,et al. Disinfection of simulated ballast water by a flow-through electro-peroxone process , 2018, Chemical Engineering Journal.
[112] Ming-hua Zhou,et al. Rolling-made gas diffusion electrode with carbon nanotube for electro-Fenton degradation of acetylsalicylic acid. , 2018, Chemosphere.
[113] V. Sharma,et al. Treatment of organic pollutants by homogeneous and heterogeneous Fenton reaction processes , 2018, Environmental Chemistry Letters.
[114] Mauro C. Santos,et al. Evaluation of H2O2 electrogeneration and decolorization of Orange II azo dye using tungsten oxide nanoparticle-modified carbon , 2018, Applied Catalysis B: Environmental.
[115] Ying-hua Liang,et al. Polyaniline hybridization promotes photo-electro-catalytic removal of organic contaminants over 3D network structure of rGH-PANI/TiO2 hydrogel , 2018, Applied Catalysis B: Environmental.
[116] Zhaojun Lin,et al. Effect of Polarization Coulomb Field Scattering on Electrical Properties of the 70-nm Gate-Length AlGaN/GaN HEMTs , 2018, Scientific Reports.
[117] A. Alshawabkeh,et al. Degradation of 4-Chlorophenol in Aqueous Solution by Sono-Electro-Fenton Process , 2018, International journal of electrochemical science.
[118] K. Müllen,et al. Carbon‐Rich Nanomaterials: Fascinating Hydrogen and Oxygen Electrocatalysts , 2018, Advanced materials.
[119] Ming-hua Zhou,et al. Highly energy-efficient removal of acrylonitrile by peroxi-coagulation with modified graphite felt cathode: Influence factors, possible mechanism , 2018, Chemical Engineering Journal.
[120] M. A. Sanromán,et al. Highly active based iron-carbonaceous cathodes for heterogeneous electro-Fenton process: Application to degradation of parabens , 2018, Process Safety and Environmental Protection.
[121] M. Oturan,et al. Photocatalytically-assisted electrooxidation of herbicide fenuron using a new bifunctional electrode PbO2/SnO2-Sb2O3/Ti//Ti/TiO2. , 2018, Chemosphere.
[122] G. Esposito,et al. Bioelectro-Fenton: evaluation of a combined biological—advanced oxidation treatment for pharmaceutical wastewater , 2018, Environmental Science and Pollution Research.
[123] Ming-hua Zhou,et al. Electrochemical advanced oxidation processes for the abatement of persistent organic pollutants. , 2018, Chemosphere.
[124] Jo‐Shu Chang,et al. Electro-peroxone pretreatment for enhanced simulated hospital wastewater treatment and antibiotic resistance genes reduction. , 2018, Environment international.
[125] M. Oturan,et al. An unprecedented route of OH radical reactivity evidenced by an electrocatalytical process: Ipso-substitution with perhalogenocarbon compounds , 2018, Applied Catalysis B: Environmental.
[126] O. Lefebvre,et al. Mineralization of electronic wastewater by electro-Fenton with an enhanced graphene-based gas diffusion cathode , 2018, Electrochimica Acta.
[127] Dong Li,et al. Preparation of RuO2-TiO2/Nano-graphite composite anode for electrochemical degradation of ceftriaxone sodium. , 2018, Journal of hazardous materials.
[128] Dayi Zhang,et al. Evaluating tetracycline degradation pathway and intermediate toxicity during the electrochemical oxidation over a Ti/Ti4O7 anode. , 2018, Water research.
[129] M. Pons,et al. Fate of inorganic nitrogen species under homogeneous Fenton combined with electro-oxidation/reduction treatments in synthetic solutions and reclaimed municipal wastewater. , 2018, Chemosphere.
[130] M. Oturan,et al. Regeneration of Activated Carbon Fiber by the Electro-Fenton Process. , 2018, Environmental science & technology.
[131] M. Kumar,et al. Composite wastewater treatment by aerated electrocoagulation and modified peroxi-coagulation processes. , 2018, Chemosphere.
[132] Ming-hua Zhou,et al. Highly efficient in-situ metal-free electrochemical advanced oxidation process using graphite felt modified with N-doped graphene , 2018 .
[133] Jinghua Guo,et al. Cobalt-Doped Black TiO2 Nanotube Array as a Stable Anode for Oxygen Evolution and Electrochemical Wastewater Treatment , 2018, ACS catalysis.
[134] Mingji Li,et al. Preparation of a porous boron-doped diamond/Ta electrode for the electrocatalytic degradation of organic pollutants , 2018 .
[135] R. S. Geonmonond,et al. Carbon-supported MnO2 nanoflowers: Introducing oxygen vacancies for optimized volcano-type electrocatalytic activities towards H2O2 generation , 2018 .
[136] C. Causserand,et al. Mineralization of organic pollutants by anodic oxidation using reactive electrochemical membrane synthesized from carbothermal reduction of TiO2. , 2018, Water research.
[137] Pengfei Ma,et al. Electrochemical treatment of real wastewater. Part 1: Effluents with low conductivity , 2018 .
[138] Jiawei Wu,et al. Conductive 3D sponges for affordable and highly-efficient water purification. , 2018, Nanoscale.
[139] Jun Huang,et al. Comparison of pharmaceutical abatement in various water matrices by conventional ozonation, peroxone (O3/H2O2), and an electro-peroxone process. , 2018, Water research.
[140] Jun Yu Li,et al. Electrosorption enhanced electrooxidation of a model organic pollutant at 3D SnO2-Sb electrode in superimposed pulse current mode. , 2018, Chemosphere.
[141] Xibin Yu,et al. Boron-doped porous Si anode materials with high initial coulombic efficiency and long cycling stability , 2018 .
[142] B. Chaplin,et al. Fabrication and characterization of porous, conductive, monolithic Ti4O7 electrodes , 2018 .
[143] J. Nørskov,et al. Understanding Catalytic Activity Trends in the Oxygen Reduction Reaction. , 2018, Chemical reviews.
[144] M. Ahmaruzzaman,et al. CTAB and SDS assisted facile fabrication of SnO2 nanoparticles for effective degradation of carbamazepine from aqueous phase: A systematic and comparative study of their degradation performance. , 2018, Water research.
[145] Hong-Yan Meng,et al. Fabrication of graphene@graphite-based gas diffusion electrode for improving H 2 O 2 generation in Electro-Fenton process , 2018 .
[146] E. Mousset,et al. Electrocatalytic phenol degradation by a novel nanostructured carbon fiber brush cathode coated with graphene ink , 2017 .
[147] E. Mousset,et al. A new 3D-printed photoelectrocatalytic reactor combining the benefits of a transparent electrode and the Fenton reaction for advanced wastewater treatment , 2017 .
[148] S. Ramakrishna,et al. Recent advances in nanomaterials for water protection and monitoring. , 2017, Chemical Society reviews.
[149] Jiangang Yu,et al. Influence of the Pt nanoscale interlayer on stability and electrical property of Ti/Pt/Sb-SnO2 electrode: A synergetic experimental and computational study , 2017 .
[150] J. Peralta-Hernández,et al. A simple process for the deposition of TiO2 onto BDD by electrophoresis and its application to the photoelectrocatalysis of Acid Blue 80 dye , 2017 .
[151] Fang Li,et al. Conductive Cotton Filters for Affordable and Efficient Water Purification , 2017 .
[152] Wei Yan,et al. Effects of twelve sodium dodecyl sulfate (SDS) on electro-catalytic performance and stability of PbO2 electrode , 2017 .
[153] S. Omanovic,et al. Fabrication and characterization of photoelectrochemically-active Sb-doped Sn x -W (100-x)% -oxide anodes: Towards the removal of organic pollutants from wastewater , 2017 .
[154] S. Joo,et al. One-step preparation of nanostructured martite catalyst and graphite electrode by glow discharge plasma for heterogeneous electro-Fenton like process. , 2017, Journal of environmental management.
[155] M. Skoglundh,et al. Functionalization of SSZ-13 and Fe-Beta with copper by NH3 and NO facilitated solid-state ion-exchange , 2017 .
[156] E. Ebenso,et al. Electrochemical detection of Epinephrine using Polyaniline nanocomposite films doped with TiO2 and RuO2 Nanoparticles on Multi-walled Carbon Nanotube , 2017 .
[157] M. A. Sanromán,et al. Heterogeneous electro-Fenton using natural pyrite as solid catalyst for oxidative degradation of vanillic acid , 2017 .
[158] S. Ammar,et al. Kinetics of oxidative degradation/mineralization pathways of the antibiotic tetracycline by the novel heterogeneous electro-Fenton process with solid catalyst chalcopyrite , 2017 .
[159] Lei Wang,et al. Ti3+ Self-Doped Black TiO2 Nanotubes with Mesoporous Nanosheet Architecture as Efficient Solar-Driven Hydrogen Evolution Photocatalysts , 2017 .
[160] Yanbin Wang,et al. Selective Electrocatalytic Degradation of Odorous Mercaptans Derived from S-Au Bond Recongnition on a Dendritic Gold/Boron-Doped Diamond Composite Electrode. , 2017, Environmental science & technology.
[161] J. B. Parsa,et al. Electrodeposition of PANI/MWCNT nanocomposite on stainless steel with enhanced electrocatalytic activity for oxygen reduction reaction and electro-Fenton process , 2017 .
[162] Jun Ma,et al. Nonradical oxidation from electrochemical activation of peroxydisulfate at Ti/Pt anode: Efficiency, mechanism and influencing factors. , 2017, Water research.
[163] J. Ngila,et al. Towards wastewater treatment: Photo-assisted electrochemical degradation of 2-nitrophenol and orange II dye at a tungsten trioxide-exfoliated graphite composite electrode , 2017 .
[164] S. Ammar,et al. Enhanced degradation of the antibiotic tetracycline by heterogeneous electro-Fenton with pyrite catalysis , 2017, Environmental Chemistry Letters.
[165] Gang Yu,et al. Electrochemical mineralization of perfluorooctane sulfonate by novel F and Sb co-doped Ti/SnO2 electrode containing Sn-Sb interlayer , 2017 .
[166] M. Koo,et al. Photoelectrochemical Degradation of Organic Compounds Coupled with Molecular Hydrogen Generation Using Electrochromic TiO2 Nanotube Arrays. , 2017, Environmental science & technology.
[167] Lili Jiang,et al. Ultrahigh yield of hydrogen peroxide on graphite felt cathode modified with electrochemically exfoliated graphene , 2017 .
[168] M. Zanoni,et al. Self-doped TiO2 nanotube electrodes: A powerful tool as a sensor platform for electroanalytical applications , 2017 .
[169] M. Yin,et al. A promising electrode material modified by Nb-doped TiO2 nanotubes for electrochemical degradation of AR 73. , 2017, Chemosphere.
[170] J. Wilcox,et al. High-performance oxygen reduction and evolution carbon catalysis: From mechanistic studies to device integration , 2017, Nano Research.
[171] M. Sillanpää,et al. Electrode materials used for electrochemical oxidation of organic compounds in wastewater , 2017, Reviews in Environmental Science and Bio/Technology.
[172] V. Vilar,et al. Electrochemical advanced oxidation processes: A review on their application to synthetic and real wastewaters , 2017 .
[173] Yanan Yuan,et al. A novel heterogeneous system for sulfate radical generation through sulfite activation on a CoFe2O4 nanocatalyst surface. , 2017, Journal of hazardous materials.
[174] Chong Fu,et al. Fabrication of Au nanoparticle/TiO2 hybrid films for photoelectrocatalytic degradation of methyl orange , 2017 .
[175] C. Lee,et al. Enhanced electrochemical oxidation of phenol by boron-doped diamond nanowire electrode , 2017 .
[176] E. Pomerantseva,et al. Emerging nanostructured electrode materials for water electrolysis and rechargeable beyond Li-ion batteries , 2017 .
[177] Yong Zhang,et al. Electrochemical Reductive Doping and Interfacial Impedance of TiO2 Nanotube Arrays in Aqueous and Aprotic Solvents , 2017 .
[178] E. Mousset,et al. Electrocatalytic activity enhancement of a graphene ink-coated carbon cloth cathode for oxidative treatment , 2016 .
[179] Seonghwan Kim,et al. Effect of Annealing Temperature on the Capacitive and Oxidant-generating Properties of an Electrochemically Reduced TiO2 Nanotube Array , 2016 .
[180] J. Pinson,et al. Effect of the anode materials on the efficiency of the electro-Fenton process for the mineralization of the antibiotic sulfamethazine , 2016 .
[181] G. Esposito,et al. Combination of anodic oxidation and biological treatment for the removal of phenanthrene and Tween 80 from soil washing solution , 2016 .
[182] M. Oturan,et al. Bioelectro-Fenton: A sustainable integrated process for removal of organic pollutants from water: Application to mineralization of metoprolol. , 2016, Journal of hazardous materials.
[183] R. Salazar,et al. Mineralization of the textile dye acid yellow 42 by solar photoelectro-Fenton in a lab-pilot plant. , 2016, Journal of hazardous materials.
[184] Mengmeng Liu,et al. Novel rolling-made gas-diffusion electrode loading trace transition metal for efficient heterogeneous electro-Fenton-like , 2016 .
[185] G. Esposito,et al. Sub-stoichiometric titanium oxide (Ti4O7) as a suitable ceramic anode for electrooxidation of organic pollutants: A case study of kinetics, mineralization and toxicity assessment of amoxicillin. , 2016, Water research.
[186] A. Gennaro,et al. Nitrogen and sulfur doped mesoporous carbon cathodes for water treatment , 2016 .
[187] Young Kwang Kim,et al. Trilayer CdS/carbon nanofiber (CNF) mat/Pt-TiO2 composite structures for solar hydrogen production: Effects of CNF mat thickness , 2016 .
[188] M. Hoffmann,et al. Synthesis and Stabilization of Blue-Black TiO2 Nanotube Arrays for Electrochemical Oxidant Generation and Wastewater Treatment. , 2016, Environmental science & technology.
[189] M. H. Samar,et al. Sono-electrochemical degradation of Orange G in pure water, natural water, and seawater: effect of operating parameters , 2016 .
[190] E. Mousset,et al. Physico-chemical properties of pristine graphene and its performance as electrode material for electro-Fenton treatment of wastewater , 2016 .
[191] Hao Jiang,et al. Heterogeneous electro-Fenton oxidation of azo dye methyl orange catalyzed by magnetic Fe3O4 nanoparticles. , 2016, Water science and technology : a journal of the International Association on Water Pollution Research.
[192] Yunshan Fan,et al. Recent advances in the development and application of nanoelectrodes. , 2016, The Analyst.
[193] Avner Ronen,et al. Polyaniline-Coated Carbon Nanotube Ultrafiltration Membranes: Enhanced Anodic Stability for In Situ Cleaning and Electro-Oxidation Processes. , 2016, ACS applied materials & interfaces.
[194] Haibo Lin,et al. Application of porous boron-doped diamond electrode towards electrochemical mineralization of triphenylmethane dye , 2016 .
[195] Qingxiang Zhou,et al. Synergistic enhancement in photoelectrocatalytic degradation of bisphenol A by CeO2 and reduced graphene oxide co-modified TiO2 nanotube arrays in combination with Fenton oxidation , 2016 .
[196] M. Oturan,et al. Mineralization of chlorobenzene in aqueous medium by anodic oxidation and electro-Fenton processes using Pt or BDD anode and carbon felt cathode , 2016 .
[197] M. Oturan,et al. A coupled Bio-EF process for mineralization of the pharmaceuticals furosemide and ranitidine: Feasibility assessment. , 2016, Chemosphere.
[198] K. Vasilev,et al. Plasma Nanoengineering and Nanofabrication , 2016, Nanomaterials.
[199] Haibo Lin,et al. A hydrophobic three-dimensionally networked boron-doped diamond electrode towards electrochemical oxidation. , 2016, Chemical communications.
[200] Md. Saifur Rahaman,et al. Electrochemical efficacy of a carboxylated multiwalled carbon nanotube filter for the removal of ibuprofen from aqueous solutions under acidic conditions. , 2016, Chemosphere.
[201] Ming-hua Zhou,et al. A highly energy-efficient flow-through electro-Fenton process for organic pollutants degradation , 2016 .
[202] J. F. Carneiro,et al. Hydrogen peroxide electrogeneration in gas diffusion electrode nanostructured with Ta2O5 , 2016 .
[203] S. Ammar,et al. Pyrite as a sustainable catalyst in electro-Fenton process for improving oxidation of sulfamethazine. Kinetics, mechanism and toxicity assessment. , 2016, Water research.
[204] L. A. Godínez,et al. Use of a carbon felt–iron oxide air-diffusion cathode for the mineralization of Malachite Green dye by heterogeneous electro-Fenton and UVA photoelectro-Fenton processes , 2016 .
[205] D. Wang,et al. Highly efficient electro-generation of hydrogen peroxide using NCNT/NF/CNT air diffusion electrode for electro-Fenton degradation of p-nitrophenol. , 2016, Water science and technology : a journal of the International Association on Water Pollution Research.
[206] Jianmeng Chen,et al. Electrochemical oxidation of cinnamic acid with Mo modified PbO2 electrode: Electrode characterization, kinetics and degradation pathway , 2016 .
[207] Gibaek Lee,et al. Electrochemical Activity of a Blue Anatase TiO 2 Nanotube Array for the Oxygen Evolution Reaction in Alkaline Water Electrolysis , 2016 .
[208] P. Nidheesh,et al. Effect of Solution pH on Leachate Treatment Mechanism of Peroxicoagulation Process , 2016 .
[209] Pu Wang,et al. A facile and novel strategy to synthesize reduced TiO₂ nanotubes photoelectrode for photoelectrocatalytic degradation of diclofenac. , 2016, Chemosphere.
[210] B. Chaplin,et al. Development and Characterization of Ultrafiltration TiO2 Magnéli Phase Reactive Electrochemical Membranes. , 2016, Environmental science & technology.
[211] Chaolin Li,et al. Electrochemical degradation of phenol by in situ electro-generated and electro-activated hydrogen peroxide using an improved gas diffusion cathode , 2015 .
[212] Wenli Zhang,et al. Anodic oxidation of aspirin on PbO2, BDD and porous Ti/BDD electrodes: Mechanism, kinetics and utilization rate , 2015 .
[213] Bo Yang,et al. Highly efficient electrochemical degradation of perfluorooctanoic acid (PFOA) by F-doped Ti/SnO2 electrode. , 2015, Journal of hazardous materials.
[214] Haibo Lin,et al. Investigation of boron-doped diamond on porous Ti for electrochemical oxidation of acetaminophen pharmaceutical drug , 2015 .
[215] M. Rodrigo,et al. Single and Coupled Electrochemical Processes and Reactors for the Abatement of Organic Water Pollutants: A Critical Review. , 2015, Chemical reviews.
[216] L. Labiadh,et al. Electrochemical mineralization of the antibiotic levofloxacin by electro-Fenton-pyrite process. , 2015, Chemosphere.
[217] Wenli Zhang,et al. Improved electrochemical performance of boron-doped diamond electrode depending on the structure of titanium substrate , 2015 .
[218] Azri Yamina Mounia,et al. Electrogeneration of hydrogen peroxide for electro-Fenton system by oxygen reduction using gold nanoparticle electrodeposited on graphite cathode , 2015 .
[219] C. Ong,et al. Electrochemical wastewater treatment with carbon nanotube filters coupled with in situ generated H2O2 , 2015 .
[220] M. Bechelany,et al. High removal efficiency of dye pollutants by electron-Fenton process using a graphene based cathode , 2015 .
[221] L. Labiadh,et al. Complete removal of AHPS synthetic dye from water using new electro-fenton oxidation catalyzed by natural pyrite as heterogeneous catalyst. , 2015, Journal of hazardous materials.
[222] Dong Li,et al. Preparation and electrochemical property of TiO2/Nano-graphite composite anode for electro-catalytic degradation of ceftriaxone sodium , 2015 .
[223] M. Zanoni,et al. Photoelectrocatalytic/photoelectro-Fenton coupling system using a nanostructured photoanode for the oxidation of a textile dye: Kinetics study and oxidation pathway. , 2015, Chemosphere.
[224] L. Mazéas,et al. Occurrence and Removal of Organic Micropollutants in Landfill Leachates Treated by Electrochemical Advanced Oxidation Processes. , 2015, Environmental science & technology.
[225] D. Sedlak,et al. Challenges and Opportunities for Electrochemical Processes as Next-Generation Technologies for the Treatment of Contaminated Water. , 2015, Environmental science & technology.
[226] A. Alvarez‐Gallegos,et al. Elimination of bio-refractory chlorinated herbicides like atrazine, alachlor, and chlorbromuron from aqueous effluents by Fenton, electro-Fenton, and peroxi-coagulation methods , 2015 .
[227] I. Soutrel,et al. Mineralization of synthetic and industrial pharmaceutical effluent containing trimethoprim by combining electro-Fenton and activated sludge treatment , 2015 .
[228] Wenli Zhang,et al. Enhanced electrochemical oxidation of organic pollutants by boron-doped diamond based on porous titanium , 2015 .
[229] Zhi Zhou,et al. Degradation of the Common Aqueous Antibiotic Tetracycline using a Carbon Nanotube Electrochemical Filter. , 2015, Environmental Science and Technology.
[230] Shuo Chen,et al. High-yield electrosynthesis of hydrogen peroxide from oxygen reduction by hierarchically porous carbon. , 2015, Angewandte Chemie.
[231] M. Bechelany,et al. A highly active based graphene cathode for the electro-fenton reaction , 2015 .
[232] P. Nidheesh,et al. Heterogeneous Fenton catalysts for the abatement of organic pollutants from aqueous solution: a review , 2015 .
[233] L. Labiadh,et al. Degradation of tyrosol by a novel electro-Fenton process using pyrite as heterogeneous source of iron catalyst. , 2015, Water research.
[234] Ming-hua Zhou,et al. Cost-effective electro-Fenton using modified graphite felt that dramatically enhanced on H2O2 electro-generation without external aeration , 2015 .
[235] Takahiro Ishizaki,et al. Simple one-step synthesis of fluorine-doped carbon nanoparticles as potential alternative metal-free electrocatalysts for oxygen reduction reaction , 2015 .
[236] C. Causserand,et al. Feasibility of Micropollutants Treatment by Coupling Nanofiltration and Electrochemical Oxidation: Case of Hospital Wastewater , 2015 .
[237] C. Vecitis,et al. Effect of the oxidation approach on carbon nanotube surface functional groups and electrooxidative filtration performance , 2015 .
[238] Haibo Xu,et al. Electrogeneration of hydrogen peroxide for electro-Fenton via oxygen reduction using polyacrylonitrile-based carbon fiber brush cathode , 2015 .
[239] Ming-hua Zhou,et al. Heterogeneous electro-Fenton using modified iron-carbon as catalyst for 2,4-dichlorophenol degradation: influence factors, mechanism and degradation pathway. , 2015, Water research.
[240] Ming-hua Zhou,et al. A novel dual gas diffusion electrodes system for efficient hydrogen peroxide generation used in electro-Fenton , 2015 .
[241] M. Zanoni,et al. Enhanced photoelectrocatalytic degradation of an acid dye with boron-doped TiO2 nanotube anodes , 2015 .
[242] Guohua Chen,et al. Highly-Ordered Magneli Ti4O7 Nanotube Arrays as Effective Anodic Material for Electro-oxidation , 2015 .
[243] Katia Bertoldi,et al. Quantitative 2D electrooxidative carbon nanotube filter model: Insight into reactive sites , 2014 .
[244] G. Esposito,et al. Treatment of synthetic soil washing solutions containing phenanthrene and cyclodextrin by electro-oxidation. Influence of anode materials on toxicity removal and biodegradability enhancement , 2014 .
[245] Yuta Nabae,et al. Highly Selective Two-Electron Oxygen Reduction Catalyzed by Mesoporous Nitrogen-Doped Carbon , 2014 .
[246] Yung-Eun Sung,et al. Blue TiO2 Nanotube Array as an Oxidant Generating Novel Anode Material Fabricated by Simple Cathodic Polarization , 2014 .
[247] Yang Yu,et al. A graphene-based electrochemical filter for water purification , 2014 .
[248] Bingchen Deng,et al. Pt/3D-graphene/FTO electrodes: Electrochemical preparation and their enhanced electrocatalytic activity , 2014 .
[249] Ming-hua Zhou,et al. Chemically modified graphite felt as an efficient cathode in electro-Fenton for p-nitrophenol degradation , 2014 .
[250] P. Nidheesh,et al. NaHCO3 enhanced Rhodamine B removal from aqueous solution by graphite–graphite electro Fenton system , 2014 .
[251] Aicheng Chen,et al. Electrocatalytic Enhancement of Salicylic Acid Oxidation at Electrochemically Reduced TiO2 Nanotubes , 2014 .
[252] M. Rodrigo,et al. Electrochemically assisted remediation of pesticides in soils and water: a review. , 2014, Chemical reviews.
[253] P. Nidheesh,et al. Effect of solution pH on the performance of three electrolytic advanced oxidation processes for the treatment of textile wastewater and sludge characteristics , 2014 .
[254] M. Pumera,et al. Electrochemistry of graphene and related materials. , 2014, Chemical reviews.
[255] S. Vasudevan. An efficient removal of phenol from water by peroxi-electrocoagulation processes , 2014 .
[256] B. Chaplin. Critical review of electrochemical advanced oxidation processes for water treatment applications. , 2014, Environmental science. Processes & impacts.
[257] Weidong Zhu,et al. Enhanced field emission from Ti3+ self-doped TiO2 nanotube arrays synthesized by a facile cathodic reduction process , 2014 .
[258] Ming-hua Zhou,et al. Efficient degradation of p-nitrophenol by electro-oxidation on Fe doped Ti/TiO2 nanotube/PbO2 anode , 2014 .
[259] Ming-hua Zhou,et al. Two-step mineralization of Tartrazine solutions: Study of parameters and by-products during the coupling of electrocoagulation with electrochemical advanced oxidation processes , 2014 .
[260] Ming-hua Zhou,et al. Recent updates on electrochemical degradation of bio-refractory organic pollutants using BDD anode: a mini review , 2014, Environmental Science and Pollution Research.
[261] Xingcheng Xiao,et al. A review of graphene and graphene oxide sponge: material synthesis and applications to energy and the environment , 2014 .
[262] K. Müllen,et al. Exfoliation of graphite into graphene in aqueous solutions of inorganic salts. , 2014, Journal of the American Chemical Society.
[263] Lizhi Zhang,et al. A dual-cell wastewater treatment system with combining anodic visible light driven photoelectro-catalytic oxidation and cathodic electro-Fenton oxidation , 2014 .
[264] I. Soutrel,et al. Electro-Fenton pretreatment for the improvement of tylosin biodegradability , 2014, Environmental Science and Pollution Research.
[265] M. Rodrigo,et al. Electrochemical advanced oxidation processes: today and tomorrow. A review , 2014, Environmental Science and Pollution Research.
[266] C. Vecitis,et al. CNT–PVDF composite flow-through electrode for single-pass sequential reduction–oxidation , 2014 .
[267] Ming-hua Zhou,et al. Effect of matrix on the electrochemical characteristics of TiO2 nanotube array-based PbO2 electrode for pollutant degradation , 2014, Environmental Science and Pollution Research.
[268] R. Reis,et al. Use of a vanadium nanostructured material for hydrogen peroxide electrogeneration , 2014 .
[269] G. Esposito,et al. Electrochemical advanced oxidation and biological processes for wastewater treatment: a review of the combined approaches , 2014, Environmental Science and Pollution Research.
[270] A. Savall,et al. Treatment of dilute methylene blue-containing wastewater by coupling sawdust adsorption and electrochemical regeneration , 2014, Environmental Science and Pollution Research.
[271] Wen‐Shing Chen,et al. Decomposition of nitrotoluenes in wastewater by sonoelectrochemical and sonoelectro-Fenton oxidation. , 2014, Ultrasonics sonochemistry.
[272] V. Sharma,et al. Depollution of indigo dye by anodic oxidation and electro-Fenton using B-doped diamond anode , 2014, Environmental Chemistry Letters.
[273] M. Oturan,et al. Advanced Oxidation Processes in Water/Wastewater Treatment: Principles and Applications. A Review , 2014 .
[274] Ib Chorkendorff,et al. Trends in the electrochemical synthesis of H2O2: enhancing activity and selectivity by electrocatalytic site engineering. , 2014, Nano letters.
[275] Jing He,et al. Preparation of Ti/SnO2-Sb electrodes modified by carbon nanotube for anodic oxidation of dye wastewater and combination with nanofiltration , 2014 .
[276] Sergi Garcia-Segura,et al. Mineralization of phthalic acid by solar photoelectro-Fenton with a stirred boron-doped diamond/air-diffusion tank reactor: Influence of Fe3+ and Cu2+ catalysts and identification of oxidation products , 2013 .
[277] W. Chu,et al. Photocatalytic oxidation of carbamazepine in triclinic-WO3 suspension: Role of alcohol and sulfate radicals in the degradation pathway , 2013 .
[278] A. Alshawabkeh,et al. Efficient degradation of contaminants of emerging concerns by a new electro-Fenton process with Ti/MMO cathode. , 2013, Chemosphere.
[279] Mauro C. Santos,et al. Synthesis and characterization of nanostructured electrocatalysts based on nickel and tin for hydrogen peroxide electrogeneration , 2013 .
[280] Yujie Feng,et al. Comparison of electrocatalytic characterization of boron-doped diamond and SnO2 electrodes , 2013 .
[281] C. Vecitis,et al. Bismuth-doped tin oxide-coated carbon nanotube network: improved anode stability and efficiency for flow-through organic electrooxidation. , 2013, ACS applied materials & interfaces.
[282] Arne Thomas,et al. Doping carbons beyond nitrogen: an overview of advanced heteroatom doped carbons with boron, sulphur and phosphorus for energy applications , 2013 .
[283] Qijun Sun,et al. Phosphorus-doped porous carbons as efficient electrocatalysts for oxygen reduction , 2013 .
[284] Rafael M. Reis,et al. Electrogeneration of hydrogen peroxide in acidic medium using gas diffusion electrodes modified with cobalt (II) phthalocyanine , 2013 .
[285] V. Sharma,et al. Electrocatalytic destruction of the antibiotic tetracycline in aqueous medium by electrochemical advanced oxidation processes: Effect of electrode materials , 2013 .
[286] R. Reis,et al. Degradation of dipyrone via advanced oxidation processes using a cerium nanostructured electrocatalyst material , 2013 .
[287] R. M. Félix-Navarro,et al. Pt–Pd bimetallic nanoparticles on MWCNTs: catalyst for hydrogen peroxide electrosynthesis , 2013, Journal of Nanoparticle Research.
[288] L. Arriaga,et al. Novel electro-fenton approach for regeneration of activated carbon. , 2013, Environmental science & technology.
[289] Ming-hua Zhou,et al. Electrogeneration of hydrogen peroxide for electro-Fenton system by oxygen reduction using chemically modified graphite felt cathode , 2013 .
[290] B. Chaplin,et al. Porous substoichiometric TiO2 anodes as reactive electrochemical membranes for water treatment. , 2013, Environmental science & technology.
[291] C. Vecitis,et al. Electrocatalysis aqueous phenol with carbon nanotubes networks as anodes: Electrodes passivation and regeneration and prevention , 2013 .
[292] Z. Li,et al. Effective degradation of methylene blue by a novel electrochemically driven process , 2013 .
[293] M. Zanoni,et al. On the application of nanostructured electrodes prepared by Ti/TiO2/WO3 "template": a case study of removing toxicity of indigo using visible irradiation. , 2013, Chemosphere.
[294] J. Guilemany,et al. Solar photoelectrocatalytic degradation of Acid Orange 7 azo dye using a highly stable TiO2 photoanode synthesized by atmospheric plasma spray , 2013 .
[295] Hanqing Yu,et al. Electrochemical degradation of methyl orange on Pt–Bi/C nanostructured electrode by a square-wave potential method , 2013 .
[296] Haibo Lin,et al. Influence of F‐ doping on the microstructure, surface morphology and electrochemical properties of the lead dioxide electrode , 2013 .
[297] C. Vecitis,et al. Quantitative Examination of Aqueous Ferrocyanide Oxidation in a Carbon Nanotube Electrochemical Filter: Effects of Flow Rate, Ionic Strength, and Cathode Material , 2013 .
[298] Q. Wang,et al. TiO2-NTs/SnO2-Sb anode for efficient electrocatalytic degradation of organic pollutants: Effect of TiO2-NTs architecture , 2013 .
[299] U. Gunten,et al. Chemistry of Ozone in Water and Wastewater Treatment , 2012 .
[300] H. Cui,et al. Fabrication and electrochemical treatment application of a microstructured TiO2-NTs/Sb–SnO2/PbO2 anode in the degradation of C.I. Reactive Blue 194 (RB 194) , 2012 .
[301] T. Cui,et al. Boron doped diamond electrodes based on porous Ti substrates , 2012 .
[302] V. Ralchenko,et al. Benzene oxidation at diamond electrodes: comparison of microcrystalline and nanocrystalline diamonds. , 2012, Chemphyschem : a European journal of chemical physics and physical chemistry.
[303] Da Chen,et al. Graphene oxide: preparation, functionalization, and electrochemical applications. , 2012, Chemical reviews.
[304] Hui‐Ming Cheng,et al. The reduction of graphene oxide , 2012 .
[305] P. Nidheesh,et al. Trends in electro-Fenton process for water and wastewater treatment: An overview , 2012 .
[306] J. M. Baik,et al. Highly Single Crystalline IrxRu1–xO2 Mixed Metal Oxide Nanowires , 2012 .
[307] Seyong Choi,et al. Electrochemical Degradation of Phenol and 2-Chlorophenol Using Pt/Ti and Boron-Doped Diamond Electrodes , 2012 .
[308] Enric Brillas,et al. Unprecedented total mineralization of atrazine and cyanuric acid by anodic oxidation and electro-Fenton with a boron-doped diamond anode , 2012, Environmental Chemistry Letters.
[309] Yi Zhang,et al. Synthesis of α-Fe2O3/TiO2 nanotube arrays for photoelectro-Fenton degradation of phenol , 2012 .
[310] J. Garrido,et al. Mineralization of flumequine in acidic medium by electro-Fenton and photoelectro-Fenton processes. , 2012, Water research.
[311] Jun Ma,et al. Preparation and electrochemical properties of Ce-Ru-SnO2 ternary oxide anode and electrochemical oxidation of nitrophenols. , 2012, Journal of hazardous materials.
[312] Ricardo Salazar,et al. Finding the best Fe2+/Cu2+ combination for the solar photoelectro-Fenton treatment of simulated wastewater containing the industrial textile dye Disperse Blue 3 , 2012 .
[313] R. Najjar. Microemulsions - An Introduction to Properties and Applications , 2012 .
[314] M. Oturan,et al. Electrochemical treatment of the antibiotic sulfachloropyridazine: kinetics, reaction pathways, and toxicity evolution. , 2012, Environmental science & technology.
[315] Markus Antonietti,et al. Mesoporous nitrogen-doped carbon for the electrocatalytic synthesis of hydrogen peroxide. , 2012, Journal of the American Chemical Society.
[316] C. Vecitis,et al. Doped carbon nanotube networks for electrochemical filtration of aqueous phenol: electrolyte precipitation and phenol polymerization. , 2012, ACS applied materials & interfaces.
[317] K. Muthukumar,et al. Advanced oxidation of phenol: A comparison between Fenton, electro-Fenton, sono-electro-Fenton and photo-electro-Fenton processes , 2012 .
[318] Shengtao Zhang,et al. Highly ordered anodic TiO2 nanotube arrays and their stabilities as photo(electro)catalysts , 2012 .
[319] C. Vecitis,et al. Reactive Transport Mechanism for Organic Oxidation during Electrochemical Filtration: Mass-Transfer, Physical Adsorption, and Electron-Transfer , 2012 .
[320] Y. Hancock. The 2010 Nobel Prize in physics—ground-breaking experiments on graphene , 2011 .
[321] C. Vecitis,et al. Electrochemical carbon nanotube filter oxidative performance as a function of surface chemistry. , 2011, Environmental science & technology.
[322] I. Oller,et al. Combination of Advanced Oxidation Processes and biological treatments for wastewater decontamination--a review. , 2011, The Science of the total environment.
[323] Q. Wang,et al. Treatment of high-salinity reverse osmosis concentrate by electrochemical oxidation on BDD and DSA electrodes , 2011 .
[324] M. Oturan,et al. Degradation of Alizarin Red by electro-Fenton process using a graphite-felt cathode , 2011 .
[325] S. Ramakrishna,et al. Nanostructured cathode materials: a key for better performance in Li-ion batteries , 2011 .
[326] Hui‐Ming Cheng,et al. Three-dimensional flexible and conductive interconnected graphene networks grown by chemical vapour deposition. , 2011, Nature materials.
[327] Haibo Lin,et al. Anodic oxidation of anthraquinone dye Alizarin Red S at Ti/BDD electrodes , 2011 .
[328] M. Sillanpää,et al. A comparative experimental study on methyl orange degradation by electrochemical oxidation on BDD and MMO electrodes , 2011 .
[329] Sergi Garcia-Segura,et al. Mineralization of the recalcitrant oxalic and oxamic acids by electrochemical advanced oxidation processes using a boron-doped diamond anode. , 2011, Water research.
[330] S. Rohani,et al. Modified TiO2 nanotube arrays (TNTAs): progressive strategies towards visible light responsive photoanode, a review , 2011 .
[331] C. Vecitis,et al. Electrochemical Carbon Nanotube Filter for Adsorption, Desorption, and Oxidation of Aqueous Dyes and Anions , 2011 .
[332] T. Jacob,et al. Theoretical studies of potential-dependent and competing mechanisms of the electrocatalytic oxygen reduction reaction on Pt(111). , 2010, Angewandte Chemie.
[333] D. Devilliers,et al. Modified titanium electrodes: Application to Ti/TiO2/PbO2 dimensionally stable anodes , 2010 .
[334] Huijuan Liu,et al. Photoelectrocatalytic degradation of organic contaminant at hybrid BDD-ZnWO4 electrode , 2010 .
[335] Yawen Tang,et al. Electro-oxidation of methanol at the different carbon materials supported Pt nano-particles , 2010 .
[336] Yiying Wu,et al. Electrocatalytic Activity of Graphene Multilayers toward I-/I3-: Effect of Preparation Conditions and Polyelectrolyte Modification , 2010 .
[337] Xin Feng,et al. Effect of low frequency ultrasonic irradiation on the sonoelectro-Fenton degradation of cationic red X-GRL , 2010 .
[338] F. Senocq,et al. Deposition of tin oxide, iridium and iridium oxide films by metal-organic chemical vapor deposition for electrochemical wastewater treatment , 2010 .
[339] Guohua Zhao,et al. Construction and High Performance of a Novel Modified Boron-Doped Diamond Film Electrode Endowed with Superior Electrocatalysis , 2010 .
[340] S. Fan,et al. A dual-chamber microbial fuel cell with conductive film-modified anode and cathode and its application for the neutral electro-Fenton process , 2010 .
[341] C. Feng,et al. Bio-electro-Fenton process driven by microbial fuel cell for wastewater treatment. , 2010, Environmental science & technology.
[342] Yanbiao Liu,et al. Photoelectrocatalytic degradation of tetracycline by highly effective TiO2 nanopore arrays electrode. , 2009, Journal of hazardous materials.
[343] A. Niaei,et al. Peroxi-coagulation degradation of C.I. Basic Yellow 2 based on carbon-PTFE and carbon nanotube-PTFE electrodes as cathode , 2009 .
[344] A. Ellis,et al. Electrocatalytic characterization and dye degradation of nano-TiO2 electrode films fabricated by CVD. , 2009, The Science of the total environment.
[345] M. Oturan,et al. Electro-Fenton process and related electrochemical technologies based on Fenton's reaction chemistry. , 2009, Chemical reviews.
[346] Huijuan Liu,et al. Photoelectrochemical degradation of anti-inflammatory pharmaceuticals at Bi2MoO6–boron-doped diamond hybrid electrode under visible light irradiation , 2009 .
[347] M. Panizza,et al. Direct and mediated anodic oxidation of organic pollutants. , 2009, Chemical reviews.
[348] Frank C. Walsh,et al. A novel flow battery: A lead acid battery based on an electrolyte with soluble lead(II): Part VII. Further studies of the lead dioxide positive electrode , 2009 .
[349] Lei Liu,et al. Fabrication and High Electrocatalytic Activity of Three-Dimensional Porous Nanosheet Pt/Boron-Doped Diamond Hybrid Film , 2009 .
[350] B. Freeman,et al. Electrochemical peroxidation of contaminated aqueous leachate , 2009 .
[351] A. Velichenko,et al. Electrodeposition of lead dioxide from methanesulfonate solutions , 2009 .
[352] J. Jia,et al. Improvement of electrochemical wastewater treatment through mass transfer in a seepage carbon nanotube electrode reactor. , 2009, Environmental science & technology.
[353] C. Martínez-Huitle,et al. Decontamination of wastewaters containing synthetic organic dyes by electrochemical methods. An updated review , 2009 .
[354] A. M. Cruz,et al. Synthesis and characterization of nanoparticles of α-Bi2Mo3O12 prepared by co-precipitation method: Langmuir adsorption parameters and photocatalytic properties with rhodamine B , 2009 .
[355] Jian-qing Zhang,et al. Electrocatalytic degradation of 4-chlorophenol on F-doped PbO(2) anodes , 2009 .
[356] J. Ni,et al. Simultaneous processes of electricity generation and p-nitrophenol degradation in a microbial fuel cell , 2009 .
[357] Xiao Cui,et al. Constructing Stake Structured TiO2-NTs/Sb-Doped SnO2 Electrode Simultaneously with High Electrocatalytic and Photocatalytic Performance for Complete Mineralization of Refractory Aromatic Acid , 2009 .
[358] G. L. Puma,et al. Photo-electro-catalysis enhancement on carbon nanotubes/titanium dioxide (CNTs/TiO2) composite prepared by a novel surfactant wrapping sol–gel method , 2008 .
[359] M. Klink,et al. Performance of sol-gel Titanium Mixed Metal Oxide electrodes for electro-catalytic oxidation of phenol , 2008 .
[360] M. Oturan,et al. Sonoelectro-Fenton process : A novel hybrid technique for the destruction of organic pollutants in water , 2008 .
[361] M. Oturan,et al. Study of the toxicity of diuron and its metabolites formed in aqueous medium during application of the electrochemical advanced oxidation process "electro-Fenton". , 2008, Chemosphere.
[362] J. Leszczynski,et al. Theoretical study of the kinetics and mechanism of the decomposition of trifluoromethanol, trichloromethanol, and tribromomethanol in the gas phase , 2008, Journal of molecular modeling.
[363] Royce W Murray,et al. Nanoelectrochemistry: metal nanoparticles, nanoelectrodes, and nanopores. , 2008, Chemical reviews.
[364] A. Kapałka,et al. The importance of electrode material in environmental electrochemistry: Formation and reactivity of free hydroxyl radicals on boron-doped diamond electrodes , 2008 .
[365] A. S. Koparal,et al. Carbon sponge as a new cathode material for the electro-Fenton process: Comparison with carbon felt cathode and application to degradation of synthetic dye basic blue 3 in aqueous medium , 2008 .
[366] S. R. Biaggio,et al. Degradation of phenol using Co- and Co,F-doped PbO(2) anodes in electrochemical filter-press cells. , 2008, Journal of hazardous materials.
[367] J. Blais,et al. Effectiveness of soil washing, nanofiltration and electrochemical treatment for the recovery of metal ions coming from a contaminated soil. , 2008, Water research.
[368] C. Berger,et al. Why multilayer graphene on 4H-SiC(0001[over ]) behaves like a single sheet of graphene. , 2008, Physical review letters.
[369] Jian-qing Zhang,et al. The influence of F- doping on the activity of PbO2 film electrodes in oxygen evolution reaction , 2007 .
[370] J. Nørskov,et al. Electrolysis of water on oxide surfaces , 2007 .
[371] R. Watts,et al. Optimization of Ti/SnO2–Sb2O5 anode preparation for electrochemical oxidation of organic contaminants in water and wastewater , 2007 .
[372] Xingwang Zhang,et al. Fe-modified Multi-walled Carbon Nanotube Electrode for Production of Hydrogen Peroxide , 2007 .
[373] A. Kraft. Doped Diamond: A Compact Review on a New, Versatile Electrode Material , 2007, International Journal of Electrochemical Science.
[374] J. Garrido,et al. Catalytic behavior of the Fe3+/Fe2+ system in the electro-Fenton degradation of the antimicrobial chlorophene , 2007 .
[375] Andre K. Geim,et al. The rise of graphene. , 2007, Nature materials.
[376] Vicente Montiel,et al. On the performance of Fe and Fe,F doped Ti-Pt/PbO2 electrodes in the electrooxidation of the Blue Reactive 19 dye in simulated textile wastewater. , 2007, Chemosphere.
[377] M. Oturan,et al. Removal of textile dyes from water by the electro-Fenton process , 2007 .
[378] M. Koper,et al. Electrochemical Reduction of Oxygen on Gold Surfaces: A Density Functional Theory Study of Intermediates and Reaction Paths , 2007 .
[379] Jong-Ha Choi,et al. Characterization and photocatalytic activity of nanostructured indium tin oxide thin-film electrode for azo-dye degradation , 2006 .
[380] S. Ferro,et al. Electrochemical oxidation of organic pollutants for the wastewater treatment: direct and indirect processes. , 2006, Chemical Society reviews.
[381] Pablo Cañizares,et al. Measurement of Mass-Transfer Coefficients by an Electrochemical Technique , 2006 .
[382] M. I. Maldonado,et al. In situ electrochemical and photo-electrochemical generation of the fenton reagent: a potentially important new water treatment technology. , 2006, Water research.
[383] B. Logan,et al. Factors affecting the electro-catalytic characteristics of Eu doped SnO2/Sb electrode. , 2006, Journal of hazardous materials.
[384] E. Oliveros,et al. Advanced Oxidation Processes for Organic Contaminant Destruction Based on the Fenton Reaction and Related Chemistry , 2006 .
[385] N. Kishimoto,et al. Advanced oxidation effect of ozonation combined with electrolysis. , 2005, Water research.
[386] Huijuan Liu,et al. Mineralization of an azo dye Acid Red 14 by electro-Fenton's reagent using an activated carbon fiber cathode , 2005 .
[387] L. Palma,et al. An experimental comparison of a graphite electrode and a gas diffusion electrode for the cathodic production of hydrogen peroxide , 2005 .
[388] H. Jónsson,et al. Origin of the Overpotential for Oxygen Reduction at a Fuel-Cell Cathode. , 2004, The journal of physical chemistry. B.
[389] M. Oturan,et al. Removal of organophosphorus pesticides from water by electrogenerated Fenton's reagent , 2003 .
[390] P. Shen,et al. Morphologic study of electrochemically formed lead dioxide , 2003 .
[391] E. Brillas,et al. Peroxi-Coagulation and Photoperoxi-Coagulation Treatments of the Herbicide 4-Chlorophenoxyacetic Acid in Aqueous Medium Using an Oxygen-Diffusion Cathode , 2003 .
[392] E. Brillas,et al. Electrochemical degradation of 2,4,5-trichlorophenoxyacetic acid in aqueous medium by peroxi-coagulation. Effect of pH and UV light , 2003 .
[393] E. Brillas,et al. Electrochemical degradation of the herbicide 4-chloro-2-methylphenoxyacetic acid in aqueous medium by peroxi-coagulation and photoperoxi-coagulation , 2003 .
[394] E. Brillas,et al. Aniline degradation by Electro-Fenton and peroxi-coagulation processes using a flow reactor for wastewater treatment. , 2002, Chemosphere.
[395] F. Maury,et al. Chemical vapor deposition of SnO2 coatings on Ti plates for the preparation of electrocatalytic anodes , 2002 .
[396] M. Oturan. An ecologically effective water treatment technique using electrochemically generated hydroxyl radicals for in situ destruction of organic pollutants: Application to herbicide 2,4-D , 2000 .
[397] A. Velichenko,et al. Oxygen and ozone evolution at fluoride modified lead dioxide electrodes , 1999 .
[398] E. Tondello,et al. A SIMS and XPS study about ions influence on electrodeposited PbO2 films , 1999 .
[399] Gyoichi Nogami,et al. Titanium dioxide thin film deposited by spray pyrolysis of aqueous solution , 1998 .
[400] E. Brillas,et al. Peroxi‐coagulation of Aniline in Acidic Medium Using an Oxygen Diffusion Cathode , 1997 .
[401] J. Pinson,et al. Hydroxylation by Electrochemically Generated OH Radicals. Mono- and Polyhydroxylation of Benzoic Acid: Products and Isomers' Distribution , 1995 .
[402] Juan Casado,et al. Electrochemical Destruction of Aniline and 4‐Chloroaniline for Wastewater Treatment Using a Carbon‐PTFE O 2 ‐ Fed Cathode , 1995 .
[403] J. Pinson,et al. Reaction of inflammation inhibitors with chemically and electrochemically generated hydroxyl radicals , 1992 .
[404] R. Adzic,et al. Electrocatalysis of oxygen on single crystal gold electrodes , 1989 .
[405] William H. Glaze,et al. The Chemistry of Water Treatment Processes Involving Ozone, Hydrogen Peroxide and Ultraviolet Radiation , 1987 .
[406] E. Yeager. Dioxygen electrocatalysis: mechanisms in relation to catalyst structure , 1986 .
[407] Ernest Yeager,et al. KINETIC STUDIES OF THE OXYGEN-PEROXIDE COUPLE ON PYROLYTIC GRAPHITE , 1970 .
[408] Fritz Haber,et al. The catalytic decomposition of hydrogen peroxide by iron salts , 1934 .
[409] J. Nava,et al. Mineralization of the antibiotic levofloxacin by the electro-peroxone process using a filter-press flow cell with a 3D air-diffusion electrode , 2021 .
[410] Ming-hua Zhou,et al. Enhanced mechanism of 2,4-dichlorophenoxyacetic acid degradation by electrochemical activation of persulfate on Blue-TiO2 nanotubes anode , 2021 .
[411] Zhiwei Wang,et al. Carbon nanotube filter functionalized with iron oxychloride for flow-through electro-Fenton , 2020 .
[412] A. Bund,et al. Nanostructured boron doped diamond enhancing the photoelectrochemical performance of TiO2/BDD heterojunction anodes , 2020 .
[413] S. Kara,et al. Laundry wastewater treatment by peroxi-coagulation , 2020 .
[414] E. Brillas,et al. The Use of Nanomaterials in Electro-Fenton and Photoelectro-Fenton Processes , 2020 .
[415] Xin Zhou,et al. Electro-Fenton with peroxi-coagulation as a feasible pre-treatment for high-strength refractory coke plant wastewater: Parameters optimization, removal behavior and kinetics analysis. , 2019, Chemosphere.
[416] M. Oturan,et al. Charge transfer/mass transport competition in advanced hybrid electrocatalytic wastewater treatment: Development of a new current efficiency relation , 2019, Applied Catalysis B: Environmental.
[417] Tao Guo,et al. Effective degradation of carbamazepine using a novel electro-peroxone process involving simultaneous electrochemical generation of ozone and hydrogen peroxide , 2018 .
[418] Yan Su,et al. Enhanced H 2 O 2 production by selective electrochemical reduction of O 2 on fluorine-doped hierarchically porous carbon , 2018 .
[419] P. Camargo,et al. Ceria high aspect ratio nanostructures supported on carbon for hydrogen peroxide electrogeneration , 2018 .
[420] Ming-hua Zhou,et al. An overview on the removal of synthetic dyes from water by electrochemical advanced oxidation processes. , 2018, Chemosphere.
[421] M. Oturan,et al. Electro-Fenton Process: Background, New Developments, and Applications , 2018 .
[422] Ming-hua Zhou,et al. Electro-Fenton Process: New Trends and Scale-Up , 2018 .
[423] F. Alcaide,et al. On-site H2O2 electrogeneration at a CoS2-based air-diffusion cathode for the electrochemical degradation of organic pollutants , 2018 .
[424] Hyunwoong Park,et al. Electrocatalytic water treatment using carbon nanotube filters modified with metal oxides , 2017, Environmental Science and Pollution Research.
[425] E. Brillas,et al. Electro-Fenton Process: Fundamentals and Reactivity , 2017 .
[426] H. Nájera-Aguilar,et al. Rapid prediction of hydrogen peroxide concentration eletrogenerated with boron doped diamond electrodes , 2017 .
[427] Yujue Wang. The Electro-peroxone Technology as a Promising Advanced Oxidation Process for Water and Wastewater Treatment , 2017 .
[428] M. Dietze,et al. Nanostructured ZnO-TiO2 thin film oxide as anode material in electrooxidation of organic pollutants. Application to the removal of dye Amido black 10B from water , 2016, Environmental Science and Pollution Research.
[429] Yanbin Wang,et al. Highly Ordered Mesoporous Fe3O4@Carbon Embedded Composite: High Catalytic Activity, Wide pH Range and Stability for Heterogeneous Electro‐Fenton , 2016 .
[430] L. Frunzo,et al. A complete phenol oxidation pathway obtained during electro-Fenton treatment and validated by a kinetic model study , 2016 .
[431] M. A. Sanromán,et al. Electro-Fenton oxidation of imidacloprid by Fe alginate gel beads , 2014 .
[432] Sergi Garcia-Segura,et al. Mineralization of the antibiotic chloramphenicol by solar photoelectro-Fenton: From stirred tank reactor to solar pre-pilot plant , 2014 .
[433] G. Esposito,et al. Influence of solubilizing agents (cyclodextrin or surfactant) on phenanthrene degradation by electro-Fenton process--study of soil washing recycling possibilities and environmental impact. , 2014, Water research.
[434] Xiangyang Zhou,et al. A hybrid nanostructure encapsulating SnO2 nanoparticles as the anode material for lithium ion batteries with high electrochemical performance , 2014 .
[435] Ib Chorkendorff,et al. Enabling direct H2O2 production through rational electrocatalyst design. , 2013, Nature materials.
[436] Huijun Zhao,et al. Photoelectrochemical properties and its application of nano-TiO2/boron-doped diamond heterojunction electrode material , 2013 .
[437] S. Martínez,et al. Enhanced sonochemical degradation of azure B dye by the electroFenton process. , 2012, Ultrasonics sonochemistry.
[438] M. Huang,et al. Preparation and characteristics of a nano-PbO2 anode for organic wastewater treatment , 2011 .
[439] S. Pulcinelli,et al. Influence of particle size on the photoactivity of Ti/TiO2 thin film electrodes, and enhanced photoelectrocatalytic degradation of indigo carmine dye , 2011 .
[440] C. Low,et al. The deposition of nanostructured β-PbO2 coatings from aqueous methanesulfonic acid for the electrochemical oxidation of organic pollutants , 2010 .
[441] H. Baltruschat,et al. Electrochemical oxidation of organic compounds induced by electro-generated free hydroxyl radicals on BDD electrode , 2010 .
[442] Ming-hua Zhou,et al. The preparation and characterization of a graphite–PTFE cathode system for the decolorization of C.I. Acid Red 2 , 2008 .
[443] C. Huang,et al. Electrochemical generation of hydrogen peroxide from dissolved oxygen in acidic solutions. , 2002, Water research.
[444] H. Fenton,et al. LXXIII.—Oxidation of tartaric acid in presence of iron , 1894 .