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Morphology effect on photocatalytic activity in Bi3Fe0.5Nb1.5O9

机译:Bi3Fe0.5nb1.5o9中光催化活性的形态学效应

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摘要

In this work, the Aurivillius-phase ferroelectric Bi3Fe0.5Nb1.5O9 were synthesized by hydrothermal (BFNO-H) and solid state methods (BFNO-S), respectively. The BFNO-H shows a hierarchical morphology, which is stacked by intersecting single-crystal nanosheets with {001} and {110} exposed facets, while the BFNO-S shows disorganized micron-scale morphology. BFNO-H shows a much stronger photodegradation activity (10.4 times and 9.8 times) than BFNO-S in the visible-light photodegradation of rhodamine B (RhB) and salicylic acid. The higher photodegradation activity of BFNO-H was firstly ascribed to the hierarchical structure and the larger specific surface area (16.586 m(2) g(-1)) because a large specific surface area can increase reactive sites and shorten photogenerated carrier migration distance. However, after being normalized by the specific surface area, BFNO-H still performs better than BFNO-S, implying that the specific surface area is not the only factor that determines the photocatalytic activity. Considering that the built-in electric field originating from spontaneous polarization in Bi3Fe0.5Nb1.5O9 has existed in both ab plane and c direction, it matches well with the {001} and {110} exposed facets of BFNO-H nanosheets. This appropriate matching in BFNO-H nanosheets may improve the separation and transmission of photogenerated electron-hole pairs and further enhance its photocatalytic activity. Moreover, the trapping experiments reveals that holes (h(+)) are the main active species and hole-derived oxidation is the main redox reaction during photodegradation of organic pollutions.
机译:在这项工作中,分别通过水热(BFNO-H)和固态方法(BFNO-S)合成了Aurivillius-阶段铁电BI3F20.5NB1.5O9。 BFNO-H示出了分层形态,其通过与{001}和{110}暴露的刻面交叉堆叠,而BFNO-S显示有杂化的微米级形态。 BFNO-H在罗丹明B(rHB)和水杨酸的可见光光降解中,比BFNO-S更强大的光降解活性(10.4次和9.8倍)。 BFNO-H的较高光降解活性首先归因于等级结构和较大的比表面积(16.586m(2)G(-1)),因为大的比表面积可以增加反应性位点并缩短光生载流子迁移距离。然而,在由比表面积归一化之后,BFNO-H仍然比BFNO-S更好,这意味着比表面积不是确定光催化活性的唯一因素。考虑到源自Bi3Fe0.5NB1.5O9中的自发极化的内置电场已经存在于AB平面和C方向上,它与BFNO-H纳米液的{001}和{110}曝光的平面良好。在BFNO-H纳米片中的这种合适的匹配可以改善光发化电子 - 空穴对的分离和透射,并进一步增强其光催化活性。此外,捕获实验揭示了孔(H(+))是主要的活性物质和孔衍生的氧化是有机污染的光降解过程中的主要氧化还原反应。

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  • 来源
    《Nanotechnology 》 |2018年第26期| 共10页
  • 作者单位

    Univ Sci &

    Technol China Dept Mat Sci &

    Engn CAS Key Lab Mat Energy Convers Hefei 230026 Anhui Peoples R China;

    Natl Synchrotron Radiat Lab Hefei 230029 Anhui Peoples R China;

    Univ Sci &

    Technol China Dept Mat Sci &

    Engn CAS Key Lab Mat Energy Convers Hefei 230026 Anhui Peoples R China;

    Univ Sci &

    Technol China Dept Mat Sci &

    Engn CAS Key Lab Mat Energy Convers Hefei 230026 Anhui Peoples R China;

    Univ Sci &

    Technol China Dept Mat Sci &

    Engn CAS Key Lab Mat Energy Convers Hefei 230026 Anhui Peoples R China;

    Univ Sci &

    Technol China Dept Mat Sci &

    Engn CAS Key Lab Mat Energy Convers Hefei 230026 Anhui Peoples R China;

    Univ Sci &

    Technol China Dept Mat Sci &

    Engn CAS Key Lab Mat Energy Convers Hefei 230026 Anhui Peoples R China;

    Univ Sci &

    Technol China Dept Mat Sci &

    Engn CAS Key Lab Mat Energy Convers Hefei 230026 Anhui Peoples R China;

  • 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

    ferroelectric; polarization; photocatalysis; Bi3Fe0.5Nb1.5O9; nanosheet; visible-light;

    机译:铁电;极化;光催化;Bi3Fe0.5nb1.5O9;纳米液;可见光;

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