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首页> 外文期刊>Physical chemistry chemical physics: PCCP >An oxygen-vacancy rich 3D novel hierarchical MoS2/BiOI/AgI ternary nanocomposite: enhanced photocatalytic activity through photogenerated electron shuttling in a Z-scheme manner
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An oxygen-vacancy rich 3D novel hierarchical MoS2/BiOI/AgI ternary nanocomposite: enhanced photocatalytic activity through photogenerated electron shuttling in a Z-scheme manner

机译:富氧空缺的3D新型MoS2 / BiOI / AgI三元纳米复合材料:通过以Z方案方式进行的光生电子穿梭,增强了光催化活性

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An oxygen-vacancy rich, bismuth oxyiodide-based Z-scheme 3D hierarchical MoS2/BiOI/AgI ternary nanocomposite photocatalyst was fabricated using a simple precipitation process in ethylene glycol and water. The presence of oxygen-vacancies in BiOI and the two-dimensional nature of molybdenum disulfides in the composite prolongs the charge carrier lifetime through a Z-scheme system and enhances the performance of the photocatalyst for the degradation of rhodamine B. On the basis of efficient separation of photoexcited electron-hole pairs, a mechanism is proposed whereby MoS2 and oxygen vacancy states increase charge carrier lifetimes and improve the photocatalytic activity. The Z-scheme mechanism of the photocatalysis is consistent with the results of static and time-resolved photoluminescence, scavenging, and terephthalic acid photoluminescence experiments. Among the as-synthesized photocatalysts, the one containing 2 wt% of MoS2 in a composite of MoS2/BiOI/AgI exhibited the highest photocatalytic activity towards rhodamine B degradation, and its activity was 7 and 16 times higher than that of BiOI/AgI and BiOI, respectively. Degradation of phenol, the colorless model pollutant, was studied to confirm the visible-light photocatalytic performance of the MoS2/BiOI/AgI composite. This easily fabricated Z-scheme based MoS2/BiOI/AgI composite exhibits promising photocatalytic activity and will be useful for potential applications in energy and environmental areas.
机译:使用简单的沉淀工艺在乙二醇和水中制备了富氧空位,基于碘化铋的Z方案3D分层MoS2 / BiOI / AgI三元纳米复合光催化剂。 BiOI中氧空位的存在以及复合物中二硫化钼的二维性质可通过Z方案系统延长电荷载流子寿命,并增强光催化剂对罗丹明B的降解性能。在有效的基础上分离光激发的电子-空穴对,提出了一种机制,其中MoS2和氧空位态可增加电荷载流子寿命并改善光催化活性。光催化的Z方案机理与静态和时间分辨的光致发光,清除和对苯二甲酸光致发光实验的结果一致。在合成的光催化剂中,一种在MoS2 / BiOI / AgI的复合物中含2 wt%MoS2的光催化剂对罗丹明B的降解表现出最高的光催化活性,其活性分别比BiOI / AgI和7分别高7到16倍。 BiOI。研究了无色模型污染物苯酚的降解,以确认MoS2 / BiOI / AgI复合材料的可见光光催化性能。这种易于制造的基于Z方案的MoS2 / BiOI / AgI复合材料具有良好的光催化活性,可用于能源和环境领域的潜在应用。

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