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Recent advances in visible light-driven water oxidation and reduction in suspension systems

机译:可见光驱动水氧化和悬浮系统减少的最新进展

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In order to solve the shortage of sustainable energy and the related concern about combustion of fossil fuels, converting the most abundant solar energy into chemical fuels becomes one of the most promising choices to provide the everlasting and environmentally friendly energy vector along with the minimum impact on environment. Among the methods of converting solar energy into chemical fuels, there is a significant interest in the renewable hydrogen production by photocatalysts from abundant water under visible light irradiation. Therefore, the development of efficient photocatalysts for water reduction and oxidation in a suspension system is the footstone for the development of solar energy conversion. In this review, the fundamental theory of photocatalysis and key factors affecting photocatalysis will be introduced first. Then the new materials development covering inorganic materials (oxides, nitrides and sulfides), carbon-based photocatalysts, and semiconductor-coordination compound photocatalysts developed over the past 10?years will be addressed with discussion about dominating factors in the photochemical process. This review would provide a comprehensive reference to exploring the efficient and novel materials working for the solar energy conversion to affordable and sustainable fuels. Finally, the perspective of the technology is also discussed.
机译:为了解决可持续能源的短缺和对化石燃料燃烧的相关担忧,将最丰富的太阳能转化为化学燃料成为提供永久性和环保能源矢量的最有希望的选择之一,以及对最小的影响环境。将太阳能转化为化学燃料的方法中,在可见光照射下通过丰富的水,对可再生氢产生的可再生氢气产生了显着兴趣。因此,悬浮系统中有效的光催化剂的发展和氧化氧化是太阳能转换的发展的脚石。在本综述中,首先将首先引入光催化的基本理论和影响光催化分析的关键因素。然后,覆盖无机材料(氧化物,氮化物和硫化物),碳的光催化剂和半导体协调复合复合光催化剂的新材料开发,并在过去10年中发育了多年的讨论,讨论了光化学过程中的主导因素。本综述将提供全面参考,探索为太阳能转换为实惠且可持续的燃料工作的高效和新材料。最后,还讨论了该技术的角度。

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