Bismuth vanadate/MXene (BiVO4/Ti3C2) heterojunction composite: enhanced interfacial control charge transfer for highly efficient visible light photocatalytic activity

被引:0
作者
Muhammad Munir Sajid
Sadaf Bashir Khan
Yasir Javed
Nasir Amin
Zhengjun Zhang
Naveed Akhtar Shad
Haifa Zhai
机构
[1] Henan Normal University,School of Physics
[2] Henan Normal University,College of Materials Science and Engineering
[3] Shenzhen University,Institute for Advanced Study
[4] Shenzhen University,Key Laboratory of Optoelectronic Devices and Systems of Ministry of Education and Guangdong Province, College of Optoelectronic Engineering
[5] University of Agriculture,Department of Physics
[6] Government College University Allama Iqbal Road,Department of Physics
[7] Tsinghua University,Advanced Key Laboratory for New Ceramics, School of Materials Science & Engineering
来源
Environmental Science and Pollution Research | 2021年 / 28卷
关键词
MXenes; BiVO; /Ti; C; Catalysis; Congo red; Methyl orange; Hydrothermal; Water purification; Nanoparticles;
D O I
暂无
中图分类号
学科分类号
摘要
We have synthesized BiVO4/Ti3C2 nanocomposite via a low-cost hydrothermal method and investigate its photocatalytic degradation activity against monoazo (methyl orange) and diazo dye (Congo red) in an aqueous solution under visible light. The physiochemical characterization exhibited that the addition of MXene in pristine BiVO4 nanocomposite led to an increase in specific surface area and reduction in optical band gap energy. MXene also helps in enhancing visible light response via a higher electron-hole pair generation rate and long lifetime. The synthesized BiVO4/Ti3C2 heterojunction composite exhibited 99.5 % degradation efficiency within 60 min for Congo red and 99.1 % for methyl orange solution in 130 min owed to a large specific surface area (1.79 m2/g), reduced band gap (1.99 eV), and low recombination rate of charge carriers. The chemical mechanism for BiVO4/Ti3C2 nanocomposite proposes that Ti3C2 role-plays as electron capture because of the higher potential of MXenes, tuning band gap energy which paves the way to excellent photocatalytic action. This work opens a new basis for developing Ti3C2 based promising and inexpensive co-catalyst for efficient solar utilization in photocatalytic-related applications in the future.
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页码:35911 / 35923
页数:12
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共 325 条
[31]  
Liu W(2013)Hydrothermal synthesis of meso/macroporous BiVO 4 hierarchical particles and their photocatalytic degradation properties under visible light irradiation Environ Sci Pollut Res 20 226-235
[32]  
Li Z(2016)A simple sonochemical approach for synthesis and characterization of Zn2SiO4 nanostructures Ultrason Sonochem 29 533-549
[33]  
Devi LG(2016)Bismuth-based photocatalytic semiconductors: introduction, challenges and possible approaches J Mol Catal A Chem 423 3483-3490
[34]  
Kavitha R(2016)Improved photocatalytic degradation of organic dyes by ZnO-nanoflowers ChemistrySelect 1 17-23
[35]  
Dou L(2017)Fabrication and characterization of Fe3O4@ SiO2@ TiO2@ Ho nanostructures as a novel and highly efficient photocatalyst for degradation of organic pollution J Energy Chem 26 425-435
[36]  
Liu Y(2016)Preparation and characterization of BaSnO 3 nanostructures via a new simple surfactant-free route J Mater Sci Mater Electron 27 303-312
[37]  
Hong Z(2009)Kinetics and isotherm studies on methylene blue adsorption onto ground palm kernel coat Turk J Eng Environ Sci 32 53-61
[38]  
Li G(2015)Effect of transition metal ion doping on the photocatalytic activity of ZnS quantum dots: synthesis, characterization, and application for dye decolorization J Mol Catal A Chem 399 2830-2840
[39]  
Yang Y(2016)A comparison investigation on photocatalytic activity performance and adsorption efficiency for the removal of cationic dye: quantum dots vs. magnetic nanoparticles J Environ Chem Eng 4 14-22
[40]  
Fang D(2016)Study of capping agent effect on the structural, optical and photocatalytic properties of zinc sulfide quantum dots Mater Sci Semicond Process 48 98-105