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Self-assembled synthesis of PbS quantum dots supported on polydopamine encapsulated BiVO4 for enhanced visible-light-driven photocatalysis

机译:聚二胺封装BIVO4上负载PBS量子点的PBS量子点的自组装合成,用于增强的可见光触发光催化

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摘要

A simple self-assembled method for the deposition of PbS quantum dots (PbS QDs) on the surface of poly dopamine (PDA)-encapsulated BiVO4 nanoparticles is proposed to synthesize PbS@PDA/BiVO4 nanocomposite photocatalysts with the assistance of ultrasonication. In the PbS@PDA/BiVO4 nanocomposites that was designed to improve the charge separation efficiency, PDA served as a natural adhesive and a stabilizer that can help to prevent PbS quantum dots from agglomeration, and PbS quantum dots served as the multiple exciton donor. The photocatalytic degradation of glyphosate experiments indicated that PbS@PDA/BiVO4 exhibited the enhanced photocatalytic activity under visible light irradiation. As compared with that of BiVO4, PbS@BiVO4 and PDA/BiVO4, the photocatalytic activity of PbS@PDA/BiVO4 was improved by 3.03, 1.48 and 1.58 times, respectively. The enhanced activity of PbS@PDA/BiVO4 can be attributed to the rapid transport of a mass of photoelectrons generated by multiexciton generation from PbS quantum dots to the surface of BiVO4 and the enhanced charge separation efficiency of photogenerated charge carrier.
机译:提出了一种简单的自组装方法,用于沉积PBS量子点(PBS QDS)在聚多巴胺(PDA)的BIVO4纳米颗粒表面上,以在超声发生的辅助中合成PBS @ PDA / BiVo4纳米复合光催化剂。在PBS @ PDA / BIVO4纳米复合材料中,设计用于提高电荷分离效率,PDA用作天然粘合剂和稳定剂,可以有助于防止PBS量子点来自附聚,并且PBS量子点用作多个激子供体。草甘膦实验的光催化降解表明PBS @ PDA / BiVO4在可见光照射下表现出增强的光催化活性。与BIVO4,PBS @ BIVO4和PDA / BIVO4相比,PBS @ PDA / BIVO4的光催化活性分别得到3.03,1.48和1.58倍。 PBS @ PDA / BIVO4的增强活性可归因于通过从PBS量子点产生的MultiExciton生成的大量光电子的快速传输到BIVO4的表面和光生电载体的增强电荷分离效率。

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