几种水裂解光催化剂的太阳能制氢

T. Takata, T. Hisatomi, K. Domen
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引用次数: 2

摘要

光催化水整体分解成H2和O2有望成为一种有效利用太阳能的方法。设计最佳的光催化剂结构是实现高效整体水分解的关键,开发能够高效转换大部分可见光光谱的光催化剂已成为当务之急。近年来,研究人员开发了一系列钙钛矿型过渡金属氧氮化物lamgxt1 - xo1 +3xN2-3x作为光催化剂,可在可见光宽波长范围内直接分解水。此外,还开发了一种新型的光催化装置——光催化片,实现了两步激水分解。这是由两种类型的半导体(析氢光催化剂和析氧光催化剂)颗粒嵌入在导电层中,并显示出高的整体水分解效率。介绍了近年来光催化水分解的研究进展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Solar hydrogen production on some water splitting photocatalysts
Photocatalytic overall water splitting into H2 and O2 is expected to be a promising method for the efficient utilization of solar energy. The design of optimal photocatalyst structures is a key to efficient overall water splitting, and the development of photocatalysts which can efficiently convert large portion of visible light spectrum has been required. Recently, a series of complex perovskite type transition metal oxynitrides, LaMgxT 1-xO1+3xN2-3x, was developed as photocatalysts for direct water splitting operable at wide wavelength of visible light. In addition two-step excitation water splitting via a novel photocatalytic device termed as photocatalyst sheet was developed. This consists of two types of semiconductors (hydrogen evolution photocatalyst and oxygen evolution photocatalyst) particles embedded in a conductive layer, and showed high efficiency for overall water splitting. These recent advances in photocatalytic water splitting were introduced.
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