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钙钛矿材料在光催化及光电相关能量转换和环境处理中的研究进展。

Research progress of perovskite materials in photocatalysis- and photovoltaics-related energy conversion and environmental treatment.

机构信息

Department of Chemical Engineering, Curtin University, Perth, WA 6845, Australia.

出版信息

Chem Soc Rev. 2015 Aug 7;44(15):5371-408. doi: 10.1039/c5cs00113g. Epub 2015 May 15.

Abstract

Meeting the growing global energy demand is one of the important challenges of the 21st century. Currently over 80% of the world's energy requirements are supplied by the combustion of fossil fuels, which promotes global warming and has deleterious effects on our environment. Moreover, fossil fuels are non-renewable energy and will eventually be exhausted due to the high consumption rate. A new type of alternative energy that is clean, renewable and inexpensive is urgently needed. Several candidates are currently available such as hydraulic power, wind force and nuclear power. Solar energy is particularly attractive because it is essentially clean and inexhaustible. A year's worth of sunlight would provide more than 100 times the energy of the world's entire known fossil fuel reserves. Photocatalysis and photovoltaics are two of the most important routes for the utilization of solar energy. However, environmental protection is also critical to realize a sustainable future, and water pollution is a serious problem of current society. Photocatalysis is also an essential route for the degradation of organic dyes in wastewater. A type of compound with the defined structure of perovskite (ABX3) was observed to play important roles in photocatalysis and photovoltaics. These materials can be used as photocatalysts for water splitting reaction for hydrogen production and photo-degradation of organic dyes in wastewater as well as for photoanodes in dye-sensitized solar cells and light absorbers in perovskite-based solar cells for electricity generation. In this review paper, the recent progress of perovskites for applications in these fields is comprehensively summarized. A description of the basic principles of the water splitting reaction, photo-degradation of organic dyes and solar cells as well as the requirements for efficient photocatalysts is first provided. Then, emphasis is placed on the designation and strategies for perovskite catalysts to improve their photocatalytic activity and/or light adsorption capability. Comments on current and future challenges are also provided. The main purpose of this review paper is to provide a current summary of recent progress in perovskite materials for use in these important areas and to provide some useful guidelines for future development in these hot research areas.

摘要

满足不断增长的全球能源需求是 21 世纪的重要挑战之一。目前,全球 80%以上的能源需求是通过燃烧化石燃料来满足的,这促进了全球变暖,并对我们的环境造成了有害影响。此外,化石燃料是非可再生能源,由于消耗率高,最终将耗尽。我们迫切需要一种新型的清洁能源、可再生能源和廉价能源。目前有几种候选能源,如水力、风力和核能。太阳能尤其具有吸引力,因为它本质上是清洁和取之不尽的。一年的阳光所提供的能量将超过全世界已知化石燃料储备的 100 多倍。光催化和光伏是利用太阳能的两种最重要途径。然而,环境保护对于实现可持续的未来也至关重要,水污染是当前社会的一个严重问题。光催化也是降解废水中有机染料的重要途径。人们观察到具有钙钛矿(ABX3)定义结构的化合物在光催化和光伏中起着重要作用。这些材料可用作光解水反应的光催化剂,用于生产氢气和光降解废水中的有机染料,以及染料敏化太阳能电池的光阳极和基于钙钛矿的太阳能电池的光吸收器,用于发电。在这篇综述论文中,全面总结了钙钛矿在这些领域应用的最新进展。首先介绍了水分解反应、光降解有机染料和太阳能电池的基本原理以及高效光催化剂的要求。然后,重点介绍了钙钛矿催化剂的设计和策略,以提高其光催化活性和/或光吸收能力。还对当前和未来的挑战进行了评论。本文的主要目的是提供钙钛矿材料在这些重要领域应用的最新进展综述,并为这些热门研究领域的未来发展提供一些有用的指导。

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