Institute of Chemical Research of Catalonia (ICIQ), Avinguda Països Catalans, 16, 43007 Tarragona, Spain.
Chem Soc Rev. 2014 Nov 21;43(22):7501-19. doi: 10.1039/c3cs60405e.
The replacement of fossil fuels by a clean and renewable energy source is one of the most urgent and challenging issues our society is facing today, which is why intense research has been devoted to this topic recently. Nature has been using sunlight as the primary energy input to oxidise water and generate carbohydrates (solar fuel) for over a billion years. Inspired, but not constrained, by nature, artificial systems can be designed to capture light and oxidise water and reduce protons or other organic compounds to generate useful chemical fuels. This tutorial review covers the primary topics that need to be understood and mastered in order to come up with practical solutions for the generation of solar fuels. These topics are: the fundamentals of light capturing and conversion, water oxidation catalysis, proton and CO2 reduction catalysis and the combination of all of these for the construction of complete cells for the generation of solar fuels.
由清洁可再生能源替代化石燃料是当今社会面临的最紧迫和最具挑战性的问题之一,这也是为什么最近人们对这个话题进行了深入研究。大自然已经利用阳光作为主要能源输入,将水氧化并生成碳水化合物(太阳能燃料),这一过程已经持续了超过十亿年。受大自然的启发,但又不受其限制,人工系统可以被设计用来捕获光线、氧化水、还原质子或其他有机化合物,以生成有用的化学燃料。本综述涵盖了为开发太阳能燃料的实用解决方案而需要理解和掌握的主要课题:光捕获和转换的基本原理、水氧化催化、质子和 CO2还原催化,以及将所有这些组合起来构建完整的太阳能燃料生成电池。