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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >0.75I0.25/BiOIO3 as a Novel Heterojunctional Photocatalyst with Superior Visible-Light-Driven Photocatalytic Activity in Removing Diverse Industrial Pollutants]]>
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0.75I0.25/BiOIO3 as a Novel Heterojunctional Photocatalyst with Superior Visible-Light-Driven Photocatalytic Activity in Removing Diverse Industrial Pollutants]]>

机译:<![CDATA [BIOBR 0.75 I 0.25 / bio> 3 作为一种新型杂官能光催化剂,具有优异的可见光催化的光催化活性在除去不同 工业污染物]]>

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摘要

A series of novel heterojunctional photocatalysts BiOBr0.75I0.25/BiOIO3 were synthesized by a facile deposition–precipitation method for the first time. In contrast to pristine BiOIO3, the photoabsorption of BiOBr0.75I0.25/BiOIO3 composites in visible light region is greatly promoted. All the BiOBr0.75I0.25/BiOIO3 composite photocatalysts exhibit highly enhanced photocatalytic activity in decomposing bisphenol A under visible light (λ > 420 nm) illumination, and the 20% BiOIO3-BiOBr0.75I0.25 sample possesses the optimal photoreactivity, which is 7.4, and 3.3 times higher than those of pure BiOIO3 and BiOBr0.75I0.25. Moreover, the 20% BiOIO3-BiOBr0.75I0.25 sample displays superior photocatalytic performance against diverse industrial contaminants and pharmaceuticals, including methyl orange, phenol, 2,4-dichlorophenol, chlortetracycline hydrochloride, and tetracycline hydrochloride. The enhancement of phototcatalytic activity is ascribed to the profoundly promoted transfer and separation of photoexcited charge carriers, which is verified by transient photocurrent response and photoluminescence emission. In addition, the photocatalytic mechanism over composite photocatalyst under visible light irradiation is systematically investigated by active species trapping experiment and ?OH quantification experiment. This work may provide a new hint for fabrication of high-performance heterojunctions by combining the narrow-band gap and wide-band gap semiconductors.]]>
机译:<![cdata [ src ='http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/asceccg/2017/ socecg.2017.5.issue-5/acssuschemeng.6b03066/20170425/1图像/中/ SC-2016-030667_0011.GIF“>一系列新型杂官能光催化剂BIOBR 0.75 I 0.25 / bioio 3 第一次容易沉积沉积法。与原始Bioio 3 相反,BioBR 0.75的光吸收 I 0.25 / bio10 3 复合材料在可见光区域中得到了极大的推动。所有BioBR 0.75 I 0.25 / bioio 3 复合光催化剂在可见光下分解双酚A(λ> 420nm)具有高度增强的光催化活性。照明,20%Bioio 3 -biobr 0.75 I 0.25 样品具有最佳的光反应性,比7.4,高3.3倍纯Bioio 3 和Biobr 0.75 i 0.25 。此外,20%Bioio 3 -biobr 0.75 I 0.25 样品显示出优异的光催化性能,针对不同的工业污染物和药物,包括甲基橙,苯酚,2,4-二氯苯酚,氯化氯化萘氯化萘氯化萘氯化萘酚和四环素盐酸盐。光催化活性的增强归因于光透射电荷载物的深刻促进的转移和分离,其通过瞬时光电流响应和光致发光排放来验证。此外,通过活性物种诱导实验系统地研究了在可见光照射下的复合光催化剂上的光催化机制。这项工作可以通过组合窄带隙和宽带隙半导体来提供一种新的提示,用于制造高性能异电功能。]]>

著录项

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  • 作者单位

    Beijing Key Laboratory of Materials Utilization of Nonmetallic Minerals and Solid Wastes National Laboratory of Mineral Materials School of Materials Science and Technology China University of Geosciences Beijing 100083 China;

    Beijing Key Laboratory of Materials Utilization of Nonmetallic Minerals and Solid Wastes National Laboratory of Mineral Materials School of Materials Science and Technology China University of Geosciences Beijing 100083 China;

    Beijing Key Laboratory of Materials Utilization of Nonmetallic Minerals and Solid Wastes National Laboratory of Mineral Materials School of Materials Science and Technology China University of Geosciences Beijing 100083 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    BiOBrlt; subgt; 075lt; /subgt; Ilt; subgt; 025lt; /subgt; BiOIOlt; subgt; 3lt; /subgt; Diverse industrial pollutants; Heterostrucure photocatalyst; Visible-light;

    机译:Biobr&lt;亚&gt;075&lt;/ sub&gt;i&lt;亚&gt;025&gt;bioio&lt;/ sub&gt;3&lt;/ sub&gt;不同的工业污染物;异超光催化剂;可见光;可见光;

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