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光催化中的硫化铜铟量子点。

Copper indium sulfide quantum dots in photocatalysis.

作者信息

Zhang Jingjing, Bifulco Aurelio, Amato Paola, Imparato Claudio, Qi Kezhen

机构信息

College of Pharmacy, Dali University, Dali 671000, Yunnan, China.

Department of Chemical, Materials and Production Engineering (DICMaPI), University of Naples Federico II, P.le Tecchio 80, 80125 Naples, Italy.

出版信息

J Colloid Interface Sci. 2023 May 15;638:193-219. doi: 10.1016/j.jcis.2023.01.107. Epub 2023 Jan 25.

Abstract

Since the advent of photocatalytic technology, scientists have been searching for semiconductor materials with high efficiency in solar energy utilization and conversion to chemical energy. Recently, the development of quantum dot (QD) photocatalysts has attracted much attention because of their unique characteristics: small size, quantum effects, strong surface activity, and wide photoresponse range. Among ternary chalcogenide semiconductors, CuInS QDs are increasingly examined in the field of photocatalysis due to their high absorption coefficients, good matching of the absorption range with sunlight spectrum, long lifetimes of photogenerated electron-hole pairs and environmental sustainability. In this review paper, the structural and electronic properties, synthesis methods and various photocatalytic applications of CuInS QDs are systematically expounded. The current research status on the photocatalytic properties of materials based on CuInS QD is discussed combined with the existing modification approaches for the enhancement of their performances. Future challenges and new development opportunities of CuInS QDs in the field of photocatalysis are then prospected.

摘要

自光催化技术问世以来,科学家们一直在寻找能高效利用太阳能并将其转化为化学能的半导体材料。近年来,量子点(QD)光催化剂的发展备受关注,因为它们具有独特的特性:尺寸小、量子效应、表面活性强以及光响应范围广。在三元硫属化物半导体中,硫化铜铟量子点(CuInS QDs)因其高吸收系数、吸收范围与太阳光谱良好匹配、光生电子 - 空穴对寿命长以及环境可持续性,在光催化领域受到越来越多的研究。在这篇综述论文中,系统地阐述了硫化铜铟量子点的结构和电子性质、合成方法以及各种光催化应用。结合现有的提高其性能的改性方法,讨论了基于硫化铜铟量子点材料的光催化性能的当前研究现状。随后展望了硫化铜铟量子点在光催化领域未来面临的挑战和新的发展机遇。

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