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AgPO/BiWO异质结构对有机污染物降解的增强可见光光催化活性和光稳定性及等离子体Z型机制

Enhanced visible-light photocatalytic activity and photostability of AgPO/BiWO heterostructures toward organic pollutant degradation and plasmonic Z-scheme mechanism.

作者信息

Ma Fengyan, Yang Qilin, Wang Zhengjun, Liu Yahong, Xin Jianjiao, Zhang Jingjing, Hao Yuting, Li Li

机构信息

College of Chemistry and Chemical Engineering, Qiqihar University Qiqihar 161006 Heilongjiang P. R. China.

College of Materials Science and Engineering, Qiqihar University Qiqihar 161006 Heilongjiang P. R. China

出版信息

RSC Adv. 2018 Apr 27;8(28):15853-15862. doi: 10.1039/c8ra01477a. eCollection 2018 Apr 23.

Abstract

Novel AgPO/BiWO heterostructured materials with enhanced visible-light catalytic performance were successfully synthesized by assembly combined with a hydrothermal treatment. The microstructures, morphologies, and optical properties of the prepared samples were characterized by multiple techniques. The irregular AgPO nanospheres dispersed on the surface of BiWO nanoflakes, and their catalytic performances were evaluated the degradation of organic pollutants including rhodamine B (RB), methylene blue (MB), crystal violet (CV), methyl orange (MO), and phenol (Phen) under visible-light irradiation. The resulting AgPO/BiWO heterostructured materials displayed higher photocatalytic activity than that of either pure BiWO or AgPO. The enhanced photocatalytic activity was due to the good formation of heterostructures, which could not only broaden the spectral response range to visible light but also effectively promoted the charge separation. Meanwhile, the reasonable photoreactive plasmonic Z-scheme mechanism was carefully investigated on the basic of the reactive species scavenging tests, photoelectrochemical experiments, and photoluminescence (PL) spectrum. In addition, the excellent photostability of AgPO/BiWO was obtained, which Ag formed at the early photocatalytic reaction acted as the charge transmission-bridge to restrain the further photoreduction of AgPO.

摘要

通过组装结合水热法成功合成了具有增强可见光催化性能的新型AgPO/BiWO异质结构材料。采用多种技术对制备样品的微观结构、形貌和光学性质进行了表征。不规则的AgPO纳米球分散在BiWO纳米片表面,并在可见光照射下通过对罗丹明B(RB)、亚甲基蓝(MB)、结晶紫(CV)、甲基橙(MO)和苯酚(Phen)等有机污染物的降解来评估其催化性能。所得的AgPO/BiWO异质结构材料表现出比纯BiWO或AgPO更高的光催化活性。光催化活性的增强归因于异质结构的良好形成,这不仅可以拓宽对可见光的光谱响应范围,还能有效促进电荷分离。同时,基于活性物种捕获试验、光电化学实验和光致发光(PL)光谱,仔细研究了合理的光反应等离子体Z型机制。此外,获得了AgPO/BiWO优异的光稳定性,在光催化反应初期形成的Ag充当电荷传输桥,抑制了AgPO的进一步光还原。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2245/9080155/c5f93fc7d267/c8ra01477a-f1.jpg

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