Epoxy graphene oxide from a simple photo-Fenton reaction and its hybrid with phytic acid for enhancing U(VI) capture.
暂无分享,去创建一个
Hao Zou | F. Chi | Ning Pan | Xiaoping Hu | Xiaoqiang Wang | Jiao Tang | Daohui Zhou | Hao Lei
[1] H. Alsulami,et al. A robust prediction of U(VI) sorption on Fe3O4/activated carbon composites with surface complexation model. , 2020, Environmental research.
[2] Lin Chen,et al. Engineering of phosphate-functionalized biochars with highly developed surface area and porosity for efficient and selective extraction of uranium , 2020 .
[3] F. Gimeno,et al. Graphene oxide and graphene oxide functionalized with silver nanoparticles as adsorbents of phosphates in waters. A comparative study. , 2019, The Science of the total environment.
[4] T. Wen,et al. Mutual effects of U(VI) and Eu(III) immobilization on interpenetrating 3-dimensional MnO2/graphene oxide composites. , 2019, The Science of the total environment.
[5] T. Hayat,et al. Functionalization of carbon nanomaterials by means of phytic acid for uranium enrichment. , 2019, The Science of the total environment.
[6] H. El-Maghrabi,et al. Magnetically modified hydroxyapatite nanoparticles for the removal of uranium (VI): Preparation, characterization and adsorption optimization. , 2019, Journal of hazardous materials.
[7] Jianrong Chen,et al. Synthesis of ultralight phosphorylated carbon aerogel for efficient removal of U(VI): Batch and fixed-bed column studies , 2019, Chemical Engineering Journal.
[8] Song Zhao,et al. pKa-Directed Incorporation of Phosphonates into MOF-808 via Ligand Exchange: Stability and Adsorption Properties for Uranium. , 2019, ACS applied materials & interfaces.
[9] T. Hayat,et al. A simple method for preparing ultra-light graphene aerogel for rapid removal of U(VI) from aqueous solution. , 2019, Environmental pollution.
[10] A. Alsaedi,et al. Dual functional nanocomposites of magnetic MnFe2O4 and fluorescent carbon dots for efficient U(VI) removal , 2019, Chemical Engineering Journal.
[11] Jing Peng,et al. Efficient thorium(IV) removal by two-dimensional Ti2CTx MXene from aqueous solution , 2019, Chemical Engineering Journal.
[12] Jianrong Chen,et al. Efficient removal of uranium(VI) by layered double hydroxides supported nanoscale zero-valent iron: A combined experimental and spectroscopic studies , 2019, Chemical Engineering Journal.
[13] T. Hayat,et al. Fully phosphorylated 3D graphene oxide foam for the significantly enhanced U(VI) sequestration. , 2019, Environmental pollution.
[14] T. Hayat,et al. Amidoxime-Functionalized Hollow Carbon Spheres for Efficient Removal of Uranium from Wastewater , 2019, ACS Sustainable Chemistry & Engineering.
[15] T. Hayat,et al. Adsorption and desorption of U(VI) on different-size graphene oxide , 2019, Chemical Engineering Journal.
[16] Bing Han,et al. Enhanced immobilization of U(VI) using a new type of FeS-modified Fe0 core-shell particles , 2019, Chemical Engineering Journal.
[17] Jun Wang,et al. Graphene Oxide and Silver Ions Coassisted Zeolitic Imidazolate Framework for Antifouling and Uranium Enrichment from Seawater , 2019, ACS Sustainable Chemistry & Engineering.
[18] Jun Wang,et al. Highly efficient immobilization of uranium(VI) from aqueous solution by phosphonate-functionalized dendritic fibrous nanosilica (DFNS). , 2019, Journal of hazardous materials.
[19] Zhanhu Guo,et al. Highly efficient uranium adsorption by salicylaldoxime/polydopamine graphene oxide nanocomposites , 2018 .
[20] Jun Liu,et al. A novel activated sludge-graphene oxide composites for the removal of uranium(VI) from aqueous solutions , 2018, Journal of Molecular Liquids.
[21] Hao Zou,et al. A Self-Assembled Supramolecular Material Containing Phosphoric Acid for Ultrafast and Efficient Capture of Uranium from Acidic Solutions , 2018, ACS Sustainable Chemistry & Engineering.
[22] Z. Chai,et al. Simultaneous elimination of cationic uranium(VI) and anionic rhenium(VII) by graphene oxide–poly(ethyleneimine) macrostructures: a batch, XPS, EXAFS, and DFT combined study , 2018 .
[23] Ruibing Wang,et al. Introduction of benzotriazole into graphene oxide for highly selective coadsorption of An and Ln: Facile synthesis and theoretical study , 2018, Chemical Engineering Journal.
[24] S. El-Bahy. New Iminodiacetate Chelating Resin-Functionalized Fe3O4 Nanoparticles: Synthesis, Characterization, and Application for the Removal of Some Noxious Metal Ions from Wastewater , 2018 .
[25] L. Wojtas,et al. Covalent Organic Frameworks as a Decorating Platform for Utilization and Affinity Enhancement of Chelating Sites for Radionuclide Sequestration , 2018, Advanced materials.
[26] T. Hayat,et al. Interaction between U(VI) with sulfhydryl groups functionalized graphene oxides investigated by batch and spectroscopic techniques. , 2018, Journal of colloid and interface science.
[27] Ruibing Wang,et al. A Schiff base/quaternary ammonium salt bifunctional graphene oxide as an efficient adsorbent for removal of Th(IV)/U(VI). , 2017, Journal of colloid and interface science.
[28] A. Iqbal,et al. Study of Graphene Oxide Structural Features for Catalytic, Antibacterial, Gas Sensing, and Metals Decontamination Environmental Applications. , 2017, ACS applied materials & interfaces.
[29] Z. Chai,et al. Interaction mechanism of uranium(VI) with three-dimensional graphene oxide-chitosan composite: Insights from batch experiments, IR, XPS, and EXAFS spectroscopy , 2017 .
[30] M. Gong,et al. Effects of contact model and NOx on soot oxidation activity over Pt/MnOx-CeO2 and the reaction mechanisms , 2017 .
[31] Jianqiang Wang,et al. Synthesis of phytic acid-decorated titanate nanotubes for high efficient and high selective removal of U(VI) , 2017 .
[32] M. Nasiri,et al. Investigation of uranium (VI) adsorption by polypyrrole. , 2017, Journal of hazardous materials.
[33] Yanxia Sun,et al. One-Pot Synthesis of LDH/GO Composites as Highly Effective Adsorbents for Decontamination of U(VI) , 2017 .
[34] R. Ding,et al. Fabrication of 3D Macroscopic Graphene Oxide Composites Supported by Montmorillonite for Efficient U(VI) Wastewater Purification , 2017 .
[35] Wenbin Lin,et al. Functionalized Porous Aromatic Framework for Efficient Uranium Adsorption from Aqueous Solutions. , 2017, ACS applied materials & interfaces.
[36] F. Dong,et al. Uranium Binding on Landoltia punctata as a Result of Formation of Insoluble Nano-U (VI) and U (IV) Phosphate Minerals , 2017 .
[37] Huafeng Tian,et al. Effect of oxidation degrees of graphene oxide on the structure and properties of poly (vinyl alcohol) composite films , 2016 .
[38] Shengke Li,et al. Preparation of graphene oxide-manganese dioxide for highly efficient adsorption and separation of Th(IV)/U(VI). , 2016, Journal of hazardous materials.
[39] Helfrid M. A. Schulte-Herbrüggen,et al. Effect of pH and Pressure on Uranium Removal from Drinking Water Using NF/RO Membranes. , 2016, Environmental science & technology.
[40] O. Wolfbeis,et al. A Phytic Acid Induced Super-Amphiphilic Multifunctional 3D Graphene-Based Foam. , 2016, Angewandte Chemie.
[41] A. Alsaedi,et al. High sorption of U(VI) on graphene oxides studied by batch experimental and theoretical calculations , 2016 .
[42] Y. Nishina,et al. Tailoring the Oxygen Content of Graphite and Reduced Graphene Oxide for Specific Applications , 2016, Scientific Reports.
[43] J. Ni,et al. Adsorption of U(VI) by multilayer titanate nanotubes: Effects of inorganic cations, carbonate and natural organic matter , 2016 .
[44] Jingrong Zhong,et al. Facile fabrication of magnetic cucurbit[6]uril/graphene oxide composite and application for uranium removal , 2016 .
[45] Xiangxue Wang,et al. High performance of phosphate-functionalized graphene oxide for the selective adsorption of U(VI) from acidic solution , 2015 .
[46] A. Xu,et al. Surface functionalization graphene oxide by polydopamine for high affinity of radionuclides , 2015 .
[47] Shengke Li,et al. The separation of Th(IV)/U(VI) via selective complexation with graphene oxide , 2015 .
[48] Wencheng Song,et al. Plasma-induced grafting of polyacrylamide on graphene oxide nanosheets for simultaneous removal of radionuclides. , 2015, Physical chemistry chemical physics : PCCP.
[49] Omkar R. Lokare,et al. Impact of the degree of functionalization of graphene oxide on the electrochemical charge storage property and metal ion adsorption , 2014 .
[50] T. Wen,et al. PANI/GO as a super adsorbent for the selective adsorption of uranium(VI) , 2014 .
[51] G. He,et al. Enhanced proton conductivity of Nafion hybrid membrane under different humidities by incorporating metal-organic frameworks with high phytic acid loading. , 2014, ACS applied materials & interfaces.
[52] E. Prasad,et al. Rate and mechanistic investigation of Eu(OTf)₂-mediated reduction of graphene oxide at room temperature. , 2014, The journal of physical chemistry. B.
[53] Hong-qi Ye,et al. A strong adsorbent for Cu²⁺: graphene oxide modified with triethanolamine. , 2014, Dalton transactions.
[54] Aimin Li,et al. Effects of the oxidation degree of graphene oxide on the adsorption of methylene blue. , 2014, Journal of hazardous materials.
[55] Sang-Jae Kim,et al. The chemical and structural analysis of graphene oxide with different degrees of oxidation , 2013 .
[56] Jingyan Zhang,et al. Photo-Fenton reaction of graphene oxide: a new strategy to prepare graphene quantum dots for DNA cleavage. , 2012, ACS nano.
[57] SonBinh T. Nguyen,et al. Aqueous Suspension and Characterization of Chemically Modified Graphene Sheets , 2008 .
[58] V. V. Goncharuk,et al. Decolourization of azodye solutions by Fenton's oxidation , 1995 .
[59] J. Bruno,et al. THE SOLUBILITY OF (UO2)3(PO4)2.4H2O(S) AND THE FORMATION OF U(VI) PHOSPHATE COMPLEXES : THEIR INFLUENCE IN URANIUM SPECIATION IN NATURAL WATERS , 1992 .