Preparation of NaNbO3 microcube with abundant oxygen vacancies and its high photocatalytic N2 fixation activity in the help of Pt nanoparticles.
暂无分享,去创建一个
Hongjun Lin | Leihong Zhao | Yiming He | Xin Hu | Zhihao Zeng | Jiayu Zhang | Chunran Zhao | Lin Yue | Linjiang Fang
[1] S. Zheng,et al. One-step preparation of MoOx/ZnS/ZnO composite and its excellent performance in piezocatalytic degradation of Rhodamine B under ultrasonic vibration. , 2023, Journal of environmental sciences.
[2] Yingpu Bi,et al. Anchoring Black Phosphorus Quantum Dots on Fe-Doped W18O49 Nanowires for Efficient Photocatalytic Nitrogen Fixation. , 2022, Angewandte Chemie.
[3] Hongjun Lin,et al. Thiophene insertion and lanthanum molybdate modification of g-C3N4 for enhanced visible-light-driven photoactivity in tetracycline degradation , 2022, Applied Surface Science.
[4] Hongjun Lin,et al. Facile preparation of Ag2S/KTa0.5Nb0.5O3 heterojunction for enhanced performance in catalytic nitrogen fixation via photocatalysis and piezo-photocatalysis , 2022, Green Energy & Environment.
[5] Hongjun Lin,et al. Novel platinum-bismuth alloy loaded KTa0.5Nb0.5O3 composite photocatalyst for effective nitrogen-to-ammonium conversion. , 2022, Journal of colloid and interface science.
[6] Yang Liu,et al. Recent advances in photocatalytic nitrogen fixation and beyond. , 2022, Nanoscale.
[7] K. Parida,et al. Robust direct Z-scheme exciton transfer dynamics by architecting 3D BiOI MF-supported non-stoichiometric Cu0.75In0.25S NC nanocomposite for co-catalyst-free photocatalytic hydrogen evolution , 2022, RSC advances.
[8] Yiming He,et al. A novel Z-scheme Bi-Bi2O3/KTa0.5Nb0.5O3 heterojunction for efficient photocatalytic conversion of N2 to NH3 , 2022, Inorganic Chemistry Frontiers.
[9] Lei Cheng,et al. 2D/2D BiVO4/CsPbBr3 S-scheme heterojunction for photocatalytic CO2 reduction: Insights into structure regulation and Fermi level modulation , 2021, Applied Catalysis B: Environmental.
[10] X. Fu,et al. An ammonia–hydrogen energy roadmap for carbon neutrality: Opportunity and challenges in china , 2021, Engineering.
[11] S. Sultana,et al. Cerium-Based Metal–Organic Framework Nanorods Nucleated on CeO2 Nanosheets for Photocatalytic N2 Fixation and Water Oxidation , 2021, ACS Applied Nano Materials.
[12] Qianlin Chen,et al. Oxygen and Titanium Vacancies in a BiOBr/MXene-Ti3C2 Composite for Boosting Photocatalytic N2 Fixation. , 2021, ACS applied materials & interfaces.
[13] Yin Hu,et al. Facile synthesis of NaNbxTa1-xO3 with abundant oxygen vacancies for photocatalytic hydrogen evolution without co-catalyst , 2021, International Journal of Hydrogen Energy.
[14] Xiaojing Li,et al. CuS/KTa0.75Nb0.25O3 nanocomposite utilizing solar and mechanical energy for catalytic N2 fixation. , 2021, Journal of colloid and interface science.
[15] S. Sultana,et al. Aggrandizing the Photoactivity of ZnO Nanorods toward N2 Reduction and H2 Evolution through Facile In Situ Coupling with NixPy , 2021 .
[16] Xiaojing Li,et al. High piezo/photocatalytic efficiency of Ag/Bi5O7I nanocomposite using mechanical and solar energy for N2 fixation and methyl orange degradation , 2021 .
[17] Shannon A. Bonke,et al. Highly Efficient and Selective Aerobic Oxidation of Cinnamyl Alcohol under Visible Light over Pt-Loaded NaNbO3 Enriched with Oxygen Vacancies by Ni Doping , 2021, ACS Sustainable Chemistry & Engineering.
[18] M. Gracia-Pinilla,et al. Synthesis, characterization, and visible light–induced photocatalytic evaluation of WO3/NaNbO3 composites for the degradation of 2,4-D herbicide , 2021 .
[19] Xin Hu,et al. Facile preparation of novel nickel sulfide modified KNbO3 heterojunction composite and its enhanced performance in photocatalytic nitrogen fixation. , 2021, Journal of colloid and interface science.
[20] Hongjun Lin,et al. A novel Bi2S3/KTa0.75Nb0.25O3 nanocomposite with high efficiency for photocatalytic and piezocatalytic N2 fixation , 2021 .
[21] T. Peng,et al. Fundamentals and Recent Progress of Photocatalytic Nitrogen‐Fixation Reaction over Semiconductors , 2020 .
[22] K. Parida,et al. A Mechanistic Approach on Oxygen Vacancy-Engineered CeO2 Nanosheets Concocts over an Oyster Shell Manifesting Robust Photocatalytic Activity toward Water Oxidation , 2020, ACS omega.
[23] S. Sultana,et al. Bandgap engineering via boron and sulphur doped carbon modified anatase TiO2: a visible light stimulated photocatalyst for photo-fixation of N2 and TCH degradation , 2020, Nanoscale advances.
[24] S. Sultana,et al. Constructing a Novel Surfactant-free MoS2 Nanosheet Modified MgIn2S4 Marigold Microflower: An Efficient Visible-Light Driven 2D-2D p-n Heterojunction Photocatalyst toward HER and pH Regulated NRR , 2020 .
[25] S. Sultana,et al. Efficient Photon Conversion via Double Charge Dynamics CeO2-BiFeO3 p-n Heterojunction Photocatalyst Promising toward N2 Fixation and Phenol-Cr(VI) Detoxification. , 2020, Inorganic chemistry.
[26] Donghai Mei,et al. Single-Atom Pt–N3 Sites on the Stable Covalent Triazine Framework Nanosheets for Photocatalytic N2 Fixation , 2020 .
[27] Ting Zhu,et al. Fe-Doped BiOCl Nanosheets with Light-Switchable Oxygen Vacancies for Photocatalytic Nitrogen Fixation , 2019 .
[28] Chade Lv,et al. High-efficiency Fe-Mediated Bi2MoO6 nitrogen-fixing photocatalyst: Reduced surface work function and ameliorated surface reaction , 2019, Applied Catalysis B: Environmental.
[29] S. A. Hassanzadeh-Tabrizi,et al. Synthesis of Fe2O3/Pt/Au nanocomposite immobilized on g-C3N4 for localized plasmon photocatalytic hydrogen evolution , 2019, Applied Surface Science.
[30] Geoffrey I N Waterhouse,et al. Defect Engineering in Photocatalytic Nitrogen Fixation , 2019, ACS Catalysis.
[31] Yi Xie,et al. Photocatalytic nitrogen fixation: the role of defects in photocatalysts , 2019, Journal of Materials Chemistry A.
[32] Hongjun Lin,et al. New Application and Excellent Performance of Ag/KNbO3 Nanocomposite in Photocatalytic NH3 Synthesis , 2019, ACS Sustainable Chemistry & Engineering.
[33] Zhiguang Wang,et al. Enhanced photocatalytic activity of perovskite NaNbO3 by oxygen vacancy engineering. , 2019, Physical chemistry chemical physics : PCCP.
[34] Xingyuan Liu,et al. Enhanced photocatalytic N2 fixation by promoting N2 adsorption with a co-catalyst. , 2019, Science bulletin.
[35] S. Sultana,et al. Phosphide protected FeS2 anchored oxygen defect oriented CeO2NS based ternary hybrid for electrocatalytic and photocatalytic N2 reduction to NH3 , 2019, Journal of Materials Chemistry A.
[36] Mengxing Liu,et al. Synthesis of Bi2WO6 with gradient oxygen vacancies for highly photocatalytic NO oxidation and mechanism study , 2019, Chemical Engineering Journal.
[37] Xinyue Zhao,et al. Preparation of interstitial carbon doped BiOI for enhanced performance in photocatalytic nitrogen fixation and methyl orange degradation. , 2019, Journal of colloid and interface science.
[38] Ying Wang,et al. A Route to Renewable Energy Triggered by the Haber-Bosch Process , 2019, Chem.
[39] Tiancheng Mu,et al. A one-step deep eutectic solvent assisted synthesis of carbon nitride/metal oxide composites for photocatalytic nitrogen fixation , 2019, Journal of Materials Chemistry A.
[40] Haihui Wang,et al. Ammonia Synthesis Under Ambient Conditions: Selective Electroreduction of Dinitrogen to Ammonia on Black Phosphorus Nanosheets. , 2019, Angewandte Chemie.
[41] C. Tung,et al. Ammonia Detection Methods in Photocatalytic and Electrocatalytic Experiments: How to Improve the Reliability of NH3 Production Rates? , 2019, Advanced science.
[42] T. Xu,et al. Size effect of Pt co-catalyst on photocatalytic efficiency of g-C3N4 for hydrogen evolution , 2019, Applied Surface Science.
[43] Yijun Zhong,et al. One-Step Solvothermal Formation of Pt Nanoparticles Decorated Pt2+-Doped α-Fe2O3 Nanoplates with Enhanced Photocatalytic O2 Evolution , 2019, ACS Catalysis.
[44] Hongjun Lin,et al. Novel carbon modified KTa0.75Nb0.25O3 nanocubes with excellent efficiency in photocatalytic H2 evolution , 2018, Fuel.
[45] Hongjun Lin,et al. Novel Ternary MoS2/C-ZnO Composite with Efficient Performance in Photocatalytic NH3 Synthesis under Simulated Sunlight , 2018, ACS Sustainable Chemistry & Engineering.
[46] Cornelia Gertina Catharina Elizabeth van Sittert,et al. Tuning the electronic structures, work functions, optical properties and stability of bifunctional hybrid graphene oxide/V–doped NaNbO3 type–II heterostructures: A promising photocatalyst for H2 production , 2018, Carbon.
[47] R. Service. Liquid sunshine. , 2018, Science.
[48] Xiaojun Wu,et al. Refining Defect States in W18O49 by Mo Doping: A Strategy for Tuning N2 Activation towards Solar-Driven Nitrogen Fixation. , 2018, Journal of the American Chemical Society.
[49] B. Pan,et al. Single atom accelerates ammonia photosynthesis , 2018, Science China Chemistry.
[50] S. Sultana,et al. Facile Synthesis of CeO2 Nanosheets Decorated upon BiOI Microplate: A Surface Oxygen Vacancy Promoted Z-Scheme-Based 2D-2D Nanocomposite Photocatalyst with Enhanced Photocatalytic Activity , 2018 .
[51] Ning Zhou,et al. All-solid-state Z-scheme 3,4-dihydroxybenzaldehyde-functionalized Ga2O3/graphitic carbon nitride photocatalyst with aromatic rings as electron mediators for visible-light photocatalytic nitrogen fixation , 2017 .
[52] Shaozheng Hu,et al. Preparation of the W18O49/g-C3N4 heterojunction catalyst with full-spectrum-driven photocatalytic N2 photofixation ability from the UV to near infrared region , 2017 .
[53] K. Parida,et al. Enhanced visible light harnessing and oxygen vacancy promoted N, S co-doped CeO2 nanoparticle: a challenging photocatalyst for Cr(VI) reduction , 2017 .
[54] Qianqian Liu,et al. Highly efficient Pt/NaNbO3 nanowire photocatalyst: Its morphology effect and application in water purification and H2 production , 2017 .
[55] Dan Chen,et al. Facet-Dependent Photocatalytic N2 Fixation of Bismuth-Rich Bi5O7I Nanosheets. , 2016, ACS applied materials & interfaces.
[56] E. Grabowska. Selected perovskite oxides: Characterization, preparation and photocatalytic properties—A review , 2016 .
[57] Z. Zou,et al. Platinum loaded NaNbO3-xNx with nanostep surface nanostructures toward enhanced visible-light photocatalytic activity , 2014 .
[58] Weifeng Zhang,et al. Effect of synthesis atmosphere on photocatalytic hydrogen production of NaNbO3 , 2014 .
[59] Y. Hou,et al. Size dependence of the polarization and dielectric properties of KNbO3 nanoparticles , 2014 .
[60] Jiening Zheng,et al. One-pot synthesis of reduced graphene oxide supported hollow Ag@Pt core–shell nanospheres with enhanced electrocatalytic activity for ethylene glycol oxidation , 2014 .
[61] Jiaguo Yu,et al. Photocatalytic water splitting for hydrogen generation on cubic, orthorhombic, and tetragonal KNbO3 microcubes. , 2013, Nanoscale.
[62] Q. Zhong,et al. Effect of nitrogen doping on oxygen vacancies of titanium dioxide supported vanadium pentoxide for ammonia-SCR reaction at low temperature. , 2013, Journal of colloid and interface science.
[63] C. Su,et al. Fabrication of High-Activity Hybrid Pt@ZnO Catalyst on Carbon Cloth by Atomic Layer Deposition for Photoassisted Electro-Oxidation of Methanol , 2013 .
[64] Hongjun Lin,et al. Efficient degradation of RhB over GdVO4/g-C3N4 composites under visible-light irradiation , 2013 .
[65] Z. Zou,et al. Photophysical and photocatalytic properties of ANbO3 (A=Na, K) photocatalysts , 2012 .
[66] Hua-ming Li,et al. Synthesis, characterization and photocatalytic activity of NaNbO3/ZnO heterojunction photocatalysts , 2011 .
[67] Xuemei Zhou,et al. Visible Light Induced Photocatalytic Degradation of Rhodamine B on One-Dimensional Iron Oxide Particles† , 2010 .
[68] A. Ganguli,et al. Nanocrystalline NaNbO3 and NaTaO3: Rietveld studies, Raman spectroscopy and dielectric properties , 2009 .
[69] S. Chavadej,et al. Use of Pt/N-doped mesoporous-assembled nanocrystalline TiO2 for photocatalytic H2 production under visible light irradiation , 2009 .
[70] Gang Chen,et al. Hydrothermal synthesis and photocatalytic properties of ATaO3ATaO3 and ANbO3ANbO3 (A=NaA=Na and K) , 2007 .
[71] Sandwip Dey,et al. Effective work function of Pt, Pd, and Re on atomic layer deposited HfO2 , 2006 .
[72] V. Murugesan,et al. Enhancement of photocatalytic activity by metal deposition: characterisation and photonic efficiency of Pt, Au and Pd deposited on TiO2 catalyst. , 2004, Water research.