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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >UV/visible light active CuCrO2 nanoparticle-SnO2 nanofiber p-n heterostructured photocatalysts for photocatalytic applications
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UV/visible light active CuCrO2 nanoparticle-SnO2 nanofiber p-n heterostructured photocatalysts for photocatalytic applications

机译:紫外/可见光活性Cucro2纳米颗粒 - SnO2纳米纤维P-N外性结构光催化剂用于光催化应用

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摘要

CuCrO2 nanoparticle decorated SnO2 nanofiber composites have been prepared as novel p-n heterostructured semiconductor photocatalysts for the degradation of organic pollutants in wastewater. The composite structure was achieved via drop casting of various amounts of hydrothermally derived CuCrO2 nanoparticles on electrospun SnO2 nanofibers. The microstructural and morphological features of each semiconductor and the formation of p-n heterojunctions between them were characterized. In addition, the photo-response and electrochemical properties of the samples were determined. The photocatalytic activity of the heterostructured photocatalysts was investigated systematically as a function of the amount of CuCrO2 nanoparticles in the samples. Experimental results showed that the optimal decoration amount was 0.6 wt% CuCrO2 on SnO2. This composite photocatalyst displayed a 41% higher rate constant value compared to pure SnO2 nanofibers in the degradation of methylene blue dye molecules and reached 83% degradation under UV/visible light irradiation after 1 h. The increase in the photocatalytic activity was ascribed to the incorporation of Cr3+ and Cu+ cations into the SnO2 host lattice and the more effective electron-hole pair separation in the heterostructured sample. The presented data here are highly convincing in comparison to those of UV active p-n heterostructured photocatalysts reported previously in the literature. Therefore, this work opens the way to develop visible light active p-n heterostructured semiconductor photocatalysts using p-type delafossites with n-type oxides.
机译:Cucro2纳米粒子装饰着SnO2纳米纤维复合材料已被制备为新型P-N异质结构半导体光催化剂,用于废水中有机污染物的降解。通过在Electrowis SnO2纳米纤维上的各种量的水热源衍生的Cucro2纳米颗粒进行复合结构。每个半导体的微观结构和形态特征和它们之间的P-N异质结的形成。此外,确定样品的光响应和电化学性质。系统地根据样品中的Cucro2纳米颗粒的量来系统地研究了异质阴性光催化剂的光催化活性。实验结果表明,SnO2上最佳装饰量为0.6wt%Cucro2。与甲基蓝染料分子的降解中的纯SnO2纳米纤维相比,该复合光催化剂呈41%较高的速率恒定值,并在1小时后在UV /可见光照射下达到83%的降解。光催化活性的增加归因于将Cr3 +和Cu +阳离子掺入SnO2宿主格中,并在异质上的样品中更有效的电子 - 空穴对分离。与先前在文献中报道的UV活性P-N异质结构的光催化剂相比,呈现的数据在这里具有高度令人信服。因此,该工作打开了使用具有N型氧化物的P型Delafossites开发可见光活性P-N异质结构半导体光催化剂的方法。

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