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用于光能光催化转化的金属半导体异质结构

Metal Semiconductor Heterostructures for Photocatalytic Conversion of Light Energy.

作者信息

Dutta Sumit Kumar, Mehetor Shyamal Kumar, Pradhan Narayan

机构信息

Department of Materials Science and Center for Advanced Materials, Indian Association for the Cultivation of Science, Kolkata 700032, India.

出版信息

J Phys Chem Lett. 2015 Mar 19;6(6):936-44. doi: 10.1021/acs.jpclett.5b00113. Epub 2015 Mar 2.

Abstract

For fast separation of the photogenerated charge carriers, metal semiconductor heterostructures have emerged as one of the leading materials in recent years. Among these, metal Au coupled with low bandgap semiconductors remain as ideal materials where both can absorb the solar light in the visible region. It is also established that on excitation, the plasmonic state of gold interacts with excited state of semiconductor and helps for the delocalization of the photogenerated electrons. Focusing these materials where electron transfer preferably occurs from semiconductor to metal Au on excitation, in this Perspective, we report the latest developments in the synthetic chemistry in designing such nano heterostructures and discuss their photocatalytic activities in organic dye degradation/reduction and/or photocatalytic water splitting for generation of hydrogen. Among these, materials such as Au-CZTS, Au-SnS, Au-Bi2S3, Au-ZnSe, and so forth are emphasized, and their formation chemistry as well as their photocatalytic activities are discussed in this Perspective.

摘要

为了实现光生电荷载流子的快速分离,金属半导体异质结构近年来已成为主要材料之一。其中,金属金与低带隙半导体相结合仍然是理想的材料,二者都能吸收可见光区域的太阳光。此外还证实,在激发时,金的等离子体态与半导体的激发态相互作用,有助于光生电子的离域。鉴于这些材料在激发时电子转移优先从半导体发生至金属金,在本综述中,我们报道了设计此类纳米异质结构的合成化学方面的最新进展,并讨论了它们在有机染料降解/还原和/或光催化水分解制氢中的光催化活性。其中,重点介绍了Au-CZTS、Au-SnS、Au-Bi2S3、Au-ZnSe等材料,并在本综述中讨论了它们的形成化学及其光催化活性。

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