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Facet-Dependent Catalytic Activity of Nanosheet-Assembled Bismuth Oxyiodide Microspheres in Degradation of Bisphenol A

机译:纳米片组装的氧化铋微球对双酚A降解的面依赖性催化活性

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摘要

Photocatalysts with different exposed facets often exhibit different photochemical performances, but the underlying mechanisms are not fully understood. In this study, we synthesized two nanosheet-assembled bismuth oxyiodide (BiOI) microspheres with exposed (110) and (001) facets, respectively, to further investigate facet-dependent photo-catalytic activity. Our experimental results showed that the BiOI microspheres with exposed (110) facets exhibited much greater catalytic activity than the BiOI microspheres with exposed (001) facets in the degradation or" bisphenol A under visible light irradiation. Density functional theory calculation revealed that the (110) facets can adsorb a greater amount of O_2 and, thus, form more O_2~(•-) and ~•OH radicals than the (001) facets. The electron spin resonance spectroscopy and radical scavenging experiments verified that the BiOI microspheres with exposed (110) facets could produce a greater amount of O_2~(•-) radicals than the BiOI microspheres with exposed (001) facets, and more importantly, between the two BiOI products, only the BiOI microspheres with exposed (110) facets could generate ~•OH radicals directly. The facet-dependent radical formation mechanisms were previously unidentified. The findings of this study may have important implications for the understanding of the facet-dependent photochemical performance of photocatalysts and the design of novel catalytic materials with inorganic nanostructures.
机译:具有不同暴露面的光催化剂通常表现出不同的光化学性能,但是其潜在机理尚未完全被理解。在这项研究中,我们合成了两个纳米片组装的碘化铋(BiOI)微球,分别暴露了(110)和(001)面,以进一步研究面相关的光催化活性。我们的实验结果表明,在可见光照射下,降解或双酚A中具有(110)面暴露的BiOI微球比具有(001)面暴露的BiOI微球具有更大的催化活性。密度泛函理论计算表明(110) )面比(001)面可吸收更多的O_2,因此形成更多的O_2〜(•-)和〜•OH自由基,电子自旋共振光谱和自由基清除实验证明,暴露于( 110)的面比暴露于(001)面的BiOI微球可以产生更多的O_2〜(•-)自由基,更重要的是,在两个BiOI产品之间,只有暴露了(110)面的BiOI微球可以生成〜 •OH自由基,以前尚未确定面依赖的自由基形成机理,这项研究的发现可能对理解面依赖的照片具有重要意义光催化剂的化学性能以及具有无机纳米结构的新型催化材料的设计。

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  • 来源
    《Environmental Science & Technology》 |2015年第10期|6240-6248|共9页
  • 作者单位

    College of Environmental Science and Engineering/Ministry of Education Key Laboratory of Pollution Processes and Environmental Criteria/Tianjin Key Laboratory of Environmental Remediation and Pollution Control, Nankai University, Wei Jin Road 94, Tianjin 300071, People's Republic of China;

    School of Physics and Materials Science, Anhui University, Hefei, Anhui 230039, People's Republic of China;

    College of Environmental Science and Engineering/Ministry of Education Key Laboratory of Pollution Processes and Environmental Criteria/Tianjin Key Laboratory of Environmental Remediation and Pollution Control, Nankai University, Wei Jin Road 94, Tianjin 300071, People's Republic of China;

    College of Environmental Science and Engineering/Ministry of Education Key Laboratory of Pollution Processes and Environmental Criteria/Tianjin Key Laboratory of Environmental Remediation and Pollution Control, Nankai University, Wei Jin Road 94, Tianjin 300071, People's Republic of China;

    College of Environmental Science and Engineering/Ministry of Education Key Laboratory of Pollution Processes and Environmental Criteria/Tianjin Key Laboratory of Environmental Remediation and Pollution Control, Nankai University, Wei Jin Road 94, Tianjin 300071, People's Republic of China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-17 13:59:40

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