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A novel and green method to synthesize CdSe quantum dots-modified TiO2 and its enhanced visible light photocatalytic activity

机译:一种新颖的绿色方法合成CdSe量子点修饰的TiO2及其增强的可见光光催化活性

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摘要

In this paper, a facile and green method was employed to synthesize CdSe quantum dots (QDs)-modified TiO2. It exhibited much higher photocatalytic activities than both TiO2 and bulk CdSe-modified TiO2 on degrading malachite green (MG) aqueous solution under visible light irradiation. The vital role that quantum size effect of CdSe QPs plays in enhancing photocatalytic properties of CdSe QDs-modified TiO2 is discussed in detail for the first time. Due to the more negative conduction band potentials of CdSe QDs than that of bulk CdSe, the electron transfer rate from CdSe QPs to TiO2 is much faster than that from bulk CdSe to TiO2, which would be beneficial for an efficient charge carrier's separation. As a result, more quantities of active species (O2·~-, H2O2, ·OH) are generated during the photocataltytic reaction in CdSe QDs-modified TiO2 system. This work could not only provide a facile and green strategy to fabricate semiconductor QPs-modified TiO2 photocatalyst but also contribute to a deeper understanding of the specific role of semiconductor QDs during the photocatalytic reaction process.
机译:本文采用一种简便,绿色的方法合成了CdSe量子点(QDs)修饰的TiO2。在可见光照射下,它对降解孔雀石绿(MG)水溶液表现出比TiO2和CdSe改性的大体积TiO2高得多的光催化活性。首次详细讨论了CdSe QPs的量子尺寸效应在增强CdSe QDs修饰的TiO2的光催化性能中的重要作用。由于CdSe QDs的负导带电势比块状CdSe的负导带电势更大,因此从CdSe QPs到TiO2的电子转移速率要比从块状CdSe到TiO2的电子转移速率快得多,这对于有效的电荷载流子的分离是有利的。结果,在CdSe QDs修饰的TiO2系统中的光催化反应期间,会生成更多数量的活性物质(O2·〜-,H2O2,·OH)。这项工作不仅可以提供一种简便且绿色的策略来制造半导体QPs改性的TiO2光催化剂,而且有助于更深入地了解半导体QD在光催化反应过程中的特殊作用。

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