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Recent progress on photocatalytic and photoelectrochemical water splitting under visible light irradiation

机译:可见光照射下光催化和光电化学水分解的最新研究进展

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摘要

Photocatalytic and photoelectrochemical (PEC) water splitting using semiconductor materials has attracted considerable interest due to its potential to cleanly produce H_2 from water by utilizing abundant solar light. Since Fujishima and Honda used a TiO_2 photoanode in 1972 to split water, researchers have been attempting to develop water-splitting systems that can efficiently use visible light (which accounts for almost half of the solar spectrum on the Earth's surface) in order to realize efficient conversion of solar light. In this report, we review recent progress in this field by focusing on strategies that utilize visible light. Such strategies include two-step photoexcitation systems that were inspired by photosynthesis in nature, band engineering for producing novel photocatalysts that have both a high visible light absorption and suitable energy levels for water splitting, the development of new cocatalysts for efficient H_2 or O_2 production, fabrication of efficient photoelectrodes based on visible-light-responsive semiconductors, and the construction of tandem-type PEC water-splitting systems.
机译:使用半导体材料进行光催化和光电化学(PEC)的水分解已经引起了人们的极大兴趣,因为它具有利用大量太阳光从水中清洁生产H_2的潜力。自1972年藤岛和本田使用TiO_2光电阳极分解水以来,研究人员一直在尝试开发可以有效利用可见光(占地球表面太阳光谱的近一半)的水分解系统。太阳光的转换。在本报告中,我们通过关注利用可见光的策略来回顾该领域的最新进展。此类策略包括受自然界中光合作用启发的两步光激发系统,用于生产新型光催化剂的能带工程,该光催化剂既具有高可见光吸收能力,又具有适合水分解的能级,开发了用于高效生产H_2或O_2的新型助催化剂,基于可见光响应半导体的高效光电极的制造,以及串联式PEC水分解系统的构建。

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