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Photocatalytic mechanism and performance of a novel wool flake-BiFeO3 nanosheet-TiO2 core-shell-structured composite photocatalyst

机译:光催化机理和新型羊毛片的性能 - BifeO3纳米晶片-TiO2核 - 壳结构复合光催化剂

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摘要

In this study, BiFeO3 (BFO) nanosheets ground from BFO particles were first incorporated with wool flakes to construct sandwich-like wool-BFO composites using the vibration-assisted ball milling technique in freezing conditions. The wool-BFO composites were then loaded with a thick layer of TiO2 nanoparticles to prepare the core-shell-structured wool-BFO-TiO2 composites using a hydrothermal synthesis process. The microstructure of the core-shell wool-BFO-TiO2 composites and its photocatalytic applications were systematically examined using a series of characterization methods. Trapping experiments and electron spin resonance spectra were also employed to judge the active radical species like superoxide radicals (O-2(-)), singlet oxygen (O-1(2)), holes (h(+)), and hydroxyl radicals (OH) using benzoquinone, furfuryl alcohol, ethylenediamine tetraacetic acid, and tert-butanol as the scavengers, respectively. The photodegradation performance of the wool-BFO-TiO2 composites was measured using more resistant methyl orange (MO) dye as the pollutant model. In comparison with the wool-TiO2 or wool-BFO composites, the superior photocatalytic properties of the wool-BFO-TiO2 composites under visible light irradiation were attributed to the presence of mesopores and macropores, the large specific surface area and intimate interface between wool-BFO composites and TiO2 nanoparticles, the coexistence of Fe3+, Fe2+, Bi3+, Bi(3-x)+, Ti4+, and Ti(3+)species, and the strong visible light harvesting, thus leading to the fast separation of photogenerated electron-hole pairs. The wool-BFO-TiO2 composites could be used for the repeated photodegradation of organic pollutants and be recycled easily using a magnet. The active radical species of the wool-BFO-TiO2 composites were O-2(-) and O-1(2) rather than OH and h(+), which were involved in the photodegradation of MO dye under visible light irradiation.
机译:在这项研究中,首次将由BFO颗粒研磨而成的BiFeO3(BFO)纳米片与羊毛薄片结合,在冷冻条件下使用振动辅助球磨技术构建三明治状羊毛BFO复合材料。然后,将羊毛BFO复合材料装载上一层厚厚的TiO2纳米颗粒,使用水热合成工艺制备核壳结构的羊毛BFO-TiO2复合材料。采用一系列表征方法系统地研究了核壳羊毛-BFO-TiO2复合材料的微观结构及其光催化应用。以苯醌、糠醇、乙二胺四乙酸和叔丁醇为清除剂,采用捕获实验和电子自旋共振光谱分别对超氧自由基(O-2(-)、单线态氧(O-1(2))、空穴(h(+))和羟基自由基(OH)等活性自由基进行了判断。使用更具抗性的甲基橙(MO)染料作为污染物模型,测量了羊毛-BFO-TiO2复合材料的光降解性能。与羊毛-TiO2或羊毛-BFO复合材料相比,羊毛-BFO-TiO2复合材料在可见光照射下的优异光催化性能归因于中孔和大孔的存在,羊毛-BFO复合材料与TiO2纳米颗粒之间的大比表面积和紧密界面,Fe3+、Fe2+、Bi3+、Bi(3-x)+、Ti4+和Ti(3+)物种的共存,以及强烈的可见光捕获,从而导致光生电子-空穴对的快速分离。羊毛-BFO-TiO2复合材料可用于有机污染物的重复光降解,并可使用磁铁轻松回收。羊毛-BFO-TiO2复合材料的活性自由基种类为O-2(-)和O-1(2),而不是OH和h(+),它们参与了钼染料在可见光照射下的光降解。

著录项

  • 来源
    《Nanotechnology》 |2021年第27期|共19页
  • 作者单位

    Xian Polytech Univ Res Ctr Funct Text Mat Sch Text Sci &

    Engn Xian 710048 Shaanxi Peoples R China;

    Xian Polytech Univ Res Ctr Funct Text Mat Sch Text Sci &

    Engn Xian 710048 Shaanxi Peoples R China;

    Shandong Lulian New Mat Co Ltd Zibo 255130 Shandong Peoples R China;

    Xian Polytech Univ Res Ctr Funct Text Mat Sch Text Sci &

    Engn Xian 710048 Shaanxi Peoples R China;

    Xian Polytech Univ Res Ctr Funct Text Mat Sch Text Sci &

    Engn Xian 710048 Shaanxi Peoples R China;

    Xian Polytech Univ Minist Educ Key Lab Funct Text Mat &

    Prod Xian 710048 Shaanxi Peoples R China;

    Univ Leeds Sch Design Performance Text &

    Clothing Res Grp Leeds LS2 9JT W Yorkshire England;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料;
  • 关键词

    Woolamp; 8211; BiFeO3amp; 8211; TiO2; coreamp; 8211; shell; methyl orange; photodegradation;

    机译:羊毛及;8211;BiFeO3&8211;二氧化钛;核心及;8211;壳甲基橙;光降解;

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