In situ reorganization of Bi3O4Br nanosheet on the Bi24O31Br10 ribbon structure for superior visible-light photocatalytic capability
暂无分享,去创建一个
Fangxi Xie | Xiuping Yue | Changming Zhang | Xiaochao Zhang | C. Fan | Yawen Wang | Jianxin Liu | Rui Li | Junqiang Feng
[1] Yawen Wang,et al. PtO/Pt4+-BiOCl with enhanced photocatalytic activity: Insight into the defect-filled mechanism , 2020 .
[2] Chuanyu Jin,et al. Deposition-precipitation synthesis of Yb3+/Er3+ co-doped BiOBr/AgBr heterojunction photocatalysts with enhanced photocatalytic activity under Vis/NIR light irradiation , 2020 .
[3] Changhua Su,et al. Synthesis and enhanced piezophotocatalytic activity of Ag2O/K0.5Na0.5NbO3 composites , 2020 .
[4] Yanxia Cui,et al. Recent advances in black phosphorus/carbon hybrid composites: from improved stability to applications , 2020 .
[5] Xiuping Yue,et al. Facile synthesis of Bi5O7Br/BiOBr 2D/3D heterojunction as efficient visible-light-driven photocatalyst for pharmaceutical organic degradation , 2020 .
[6] Rui Li,et al. The BiOCl/diatomite composites for rapid photocatalytic degradation of ciprofloxacin: Efficiency, toxicity evaluation, mechanisms and pathways , 2020 .
[7] Xiao-Tian Wang,et al. One-dimensional core-shell Zn0.1Cd0.9S/Snln4S8 heterojunction for enhanced visible light photocatalytic degradation , 2020 .
[8] Chiing-Chang Chen,et al. Lead bismuth oxybromide/graphene oxide: Synthesis, characterization, and photocatalytic activity for removal of carbon dioxide, crystal violet dye, and 2-hydroxybenzoic acid. , 2019, Journal of colloid and interface science.
[9] Xiaochao Zhang,et al. Photocatalytic conversion of nitrogen to ammonia with water on triphase interfaces of hydrophilic-hydrophobic composite Bi4O5Br2/ZIF-8 , 2019, Chemical Engineering Journal.
[10] Chiing-Chang Chen,et al. BiOxCly/BiOmBrn/BiOpIq/GO quaternary composites: Syntheses and application of visible-light-driven photocatalytic activities. , 2019, Journal of colloid and interface science.
[11] K. Domen,et al. Recent developments in heterogeneous photocatalysts for solar-driven overall water splitting. , 2019, Chemical Society reviews.
[12] Hualiang Lv,et al. Investigation and optimization of Fe/ZnFe2O4 as a Wide-band electromagnetic absorber. , 2019, Journal of colloid and interface science.
[13] Huabing Wen,et al. 2D/2D Z-scheme heterojunction of CuInS2/g-C3N4 for enhanced visible-light-driven photocatalytic activity towards the degradation of tetracycline , 2019, Separation and Purification Technology.
[14] L. Jia,et al. Self-assembly photocatalytic reduction synthesis of graphene-encapusulated LaNiO3 nanoreactor with high efficiency and stability for photocatalytic water splitting to hydrogen , 2019, Chemical Engineering Journal.
[15] Cheng Sun,et al. Size tunable Bi3O4Br hierarchical hollow spheres assembled with {0 0 1}-facets exposed nanosheets for robust photocatalysis against phenolic pollutants , 2019, Journal of Catalysis.
[16] Chiing-Chang Chen,et al. Composite photocatalyst, tetragonal lead bismuth oxyiodide/bismuth oxyiodide/graphitic carbon nitride: Synthesis, characterization, and photocatalytic activity. , 2019, Journal of colloid and interface science.
[17] Chunmei Li,et al. Construction 0D/2D heterojunction by highly dispersed Ni2P QDs loaded on the ultrathin g-C3N4 surface towards superhigh photocatalytic and photoelectric performance , 2018, Applied Catalysis B: Environmental.
[18] Jiapeng Chang,et al. Bismuth oxyfluoride/bismuth oxyiodide nanocomposites enhance visible-light-driven photocatalytic activity. , 2018, Journal of colloid and interface science.
[19] Jiapeng Chang,et al. Controlled hydrothermal synthesis of bismuth oxychloride/bismuth oxybromide/bismuth oxyiodide composites exhibiting visible-light photocatalytic degradation of 2-hydroxybenzoic acid and crystal violet. , 2018, Journal of colloid and interface science.
[20] Shanqing Zhang,et al. One-Pot Hydrothermal Synthesis of SnO2/BiOBr Heterojunction Photocatalysts for the Efficient Degradation of Organic Pollutants Under Visible Light. , 2018, ACS applied materials & interfaces.
[21] M. Antonietti,et al. Continuous Heterogeneous Photocatalysis in Serial Micro-Batch Reactors. , 2018, Angewandte Chemie.
[22] Changming Zhang,et al. Iodide-modified Bi4O5Br2 photocatalyst with tunable conduction band position for efficient visible-light decontamination of pollutants , 2018 .
[23] Guangcheng Yang,et al. Ultrafast one-step synthesis of N and Ti3+ codoped TiO2 nanosheets via energetic material deflagration , 2018, Nano Research.
[24] D. Zhao,et al. High performance heterojunction photocatalytic membranes formed by embedding Cu2O and TiO2 nanowires in reduced graphene oxide , 2018 .
[25] Peifang Wang,et al. Construction of a composite photocatalyst with significantly enhanced photocatalytic performance through combination of homo-junction with hetero-junction , 2018 .
[26] Xiaobo Chen,et al. Phosphorus-Doped Graphitic Carbon Nitride Nanotubes with Amino-rich Surface for Efficient CO2 Capture, Enhanced Photocatalytic Activity, and Product Selectivity. , 2017, ACS applied materials & interfaces.
[27] Jian Yang,et al. Hierarchical porous Bi24O31Br10 microarchitectures assembled by ultrathin nanosheets with strong adsorption and excellent photocatalytic performances , 2017 .
[28] Wei Wu,et al. Efficient Visible Light Formaldehyde Oxidation with 2D p-n Heterostructure of BiOBr/BiPO4 Nanosheets at Room Temperature , 2017 .
[29] Rui Li,et al. Harnessing Ag nanofilm as an electrons transfer mediator for enhanced visible light photocatalytic performance of Ag@AgCl/Ag nanofilm/ZIF-8 photocatalyst , 2017 .
[30] Deli Jiang,et al. Perovskite oxide ultrathin nanosheets/g-C3N4 2D-2D heterojunction photocatalysts with significantly enhanced photocatalytic activity towards the photodegradation of tetracycline , 2017 .
[31] W. Ho,et al. Fabrication of Bi 2 O 2 CO 3 /g-C 3 N 4 heterojunctions for efficiently photocatalytic NO in air removal: In-situ self-sacrificial synthesis, characterizations and mechanistic study , 2016 .
[32] Yihe Zhang,et al. In situ assembly of BiOI@Bi12O17Cl2 p-n junction: charge induced unique front-lateral surfaces coupling heterostructure with high exposure of BiOI {001} active facets for robust and nonselective photocatalysis , 2016 .
[33] Peifang Wang,et al. Synthesis of novel 2D-2D p-n heterojunction BiOBr/La2Ti2O7 composite photocatalyst with enhanced photocatalytic performance under both UV and visible light irradiation , 2016 .
[34] Zhiliang Liu,et al. Constructing Bi24O31Cl10/BiOCl heterojunction via a simple thermal annealing route for achieving enhanced photocatalytic activity and selectivity , 2016, Scientific Reports.
[35] Haiquan Xie,et al. Thickness-ultrathin and bismuth-rich strategies for BiOBr to enhance photoreduction of CO2 into solar fuels , 2016 .
[36] Chiing-Chang Chen,et al. Controlled hydrothermal synthesis of PbBiO2Br/BiOBr heterojunction with enhanced visible-driven-light photocatalytic activities , 2016 .
[37] Rui Li,et al. Synthesis of Bi4O5Br2 from reorganization of BiOBr and its excellent visible light photocatalytic activity. , 2016, Dalton transactions.
[38] Xuxu Wang,et al. One-pot fabrication of Bi3O4Cl/BiOCl plate-on-plate heterojunction with enhanced visible-light photocatalytic activity , 2016 .
[39] Lizhi Zhang,et al. Superior visible light hydrogen evolution of Janus bilayer junctions via atomic-level charge flow steering , 2016, Nature Communications.
[40] Chuan Wu,et al. Enhanced Sodium Ion Storage Behavior of P2-Type Na(2/3)Fe(1/2)Mn(1/2)O2 Synthesized via a Chelating Agent Assisted Route. , 2016, ACS applied materials & interfaces.
[41] Hongtao Yu,et al. Uncovering the Key Role of the Fermi Level of the Electron Mediator in a Z-Scheme Photocatalyst by Detecting the Charge Transfer Process of WO3-metal-gC3N4 (Metal = Cu, Ag, Au). , 2016, ACS applied materials & interfaces.
[42] Wei Zhang,et al. Capture of atmospheric CO2 into (BiO)2CO3/graphene or graphene oxide nanocomposites with enhanced photocatalytic performance , 2015 .
[43] Qi Zhang,et al. Controllable synthesis of Bi4O5Br2 ultrathin nanosheets for photocatalytic removal of ciprofloxacin and mechanism insight , 2015 .
[44] Ang Li,et al. Enhanced Surface Reaction Kinetics and Charge Separation of p-n Heterojunction Co3O4/BiVO4 Photoanodes. , 2015, Journal of the American Chemical Society.
[45] Jun Jiang,et al. Steering charge kinetics in photocatalysis: intersection of materials syntheses, characterization techniques and theoretical simulations. , 2015, Chemical Society reviews.
[46] Can Li,et al. Interface engineering of a CoO(x)/Ta3N5 photocatalyst for unprecedented water oxidation performance under visible-light-irradiation. , 2015, Angewandte Chemie.
[47] Chiing-Chang Chen,et al. Controlled hydrothermal synthesis of BiOxCly/BiOmIn composites exhibiting visible-light photocatalytic degradation of crystal violet. , 2015, Journal of hazardous materials.
[48] Yihe Zhang,et al. Fabrication of multiple heterojunctions with tunable visible-light-active photocatalytic reactivity in BiOBr-BiOI full-range composites based on microstructure modulation and band structures. , 2015, ACS applied materials & interfaces.
[49] Chiing-Chang Chen,et al. Synthesis of BiOBr, Bi3O4Br, and Bi12O17Br2 by controlled hydrothermal method and their photocatalytic properties , 2014 .
[50] Gang Zhao,et al. Novel Bi2WO6 flower type structure controllable synthesis and enhanced visible photocatalytic degradation performances , 2013, Journal of Nanoparticle Research.
[51] Ying Yu,et al. Highly efficient photocatalytic removal of sodium pentachlorophenate with Bi3O4Br under visible light , 2013 .
[52] J. Nan,et al. Facile microwave synthesis of novel hierarchical Bi24O31Br10 nanoflakes with excellent visible light photocatalytic performance for the degradation of tetracycline hydrochloride , 2013 .
[53] Juan Zhou,et al. In situ controlled growth of ZnIn2S4 nanosheets on reduced graphene oxide for enhanced photocatalytic hydrogen production performance. , 2013, Chemical communications.
[54] Ping Liu,et al. Facile in situ synthesis of a Bi/BiOCl nanocomposite with high photocatalytic activity , 2013 .
[55] Binbin Chang,et al. BiOBr–carbon nitride heterojunctions: synthesis, enhanced activity and photocatalytic mechanism , 2012 .
[56] Jae Sung Lee,et al. Heterojunction BiVO4/WO3 electrodes for enhanced photoactivity of water oxidation , 2011 .
[57] Yujie Feng,et al. Synthesis of visible-light responsive graphene oxide/TiO(2) composites with p/n heterojunction. , 2010, ACS nano.
[58] Jun Chen,et al. Shape-controlled synthesis of ternary chalcogenide ZnIn2S4 and CuIn(S,Se)2 nano-/microstructures via facile solution route. , 2006, Journal of the American Chemical Society.
[59] Li-Jun Wan,et al. Self-assembled vanadium pentoxide (V2O5) hollow microspheres from nanorods and their application in lithium-ion batteries. , 2005, Angewandte Chemie.
[60] P. Sadler,et al. Coordination chemistry of metals in medicine: target sites for bismuth , 1999 .
[61] H. Koo,et al. Synthesis of high-Tc superconducting Bi-Pb Sr-Ca-Cu-O ceramics prepared by an ultrastructure processing via the oxalate route , 1990 .