Progress in manipulating spin polarization for solar hydrogen production

Qian Yang , Xin Tong , Zhiming Wang
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Abstract

Photocatalytic and photoelectrochemical water splitting using semiconductor materials are effective approaches for converting solar energy into hydrogen fuel. In the past few years, a series of photocatalysts/photoelectrocatalysts have been developed and optimized to achieve efficient solar hydrogen production. Among various optimization strategies, the regulation of spin polarization can tailor the intrinsic optoelectronic properties for retarding charge recombination and enhancing surface reactions, thus improving the solar-to-hydrogen (STH) efficiency. This review presents recent advances in the regulation of spin polarization to enhance spin polarized-dependent solar hydrogen evolution activity. Specifically, spin polarization manipulation strategies of several typical photocatalysts/photoelectrocatalysts (e.g., metallic oxides, metallic sulfides, non-metallic semiconductors, ferroelectric materials, and chiral molecules) are described. In the end, the critical challenges and perspectives of spin polarization regulation towards future solar energy conversion are briefly provided.

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操纵自旋极化促进太阳能制氢的进展
利用半导体材料进行光催化和光电化学分水是将太阳能转化为氢燃料的有效方法。在过去几年中,人们开发并优化了一系列光催化剂/光电催化剂,以实现高效的太阳能制氢。在各种优化策略中,自旋极化的调控可定制固有的光电特性,以阻止电荷重组和增强表面反应,从而提高太阳能制氢(STH)的效率。本综述介绍了在调节自旋极化以提高依赖自旋极化的太阳能氢进化活性方面的最新进展。具体而言,介绍了几种典型光催化剂/光电催化剂(如金属氧化物、金属硫化物、非金属半导体、铁电材料和手性分子)的自旋极化调控策略。最后,简要介绍了自旋极化调节对未来太阳能转换的关键挑战和前景。
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来源期刊
材料导报:能源(英文)
材料导报:能源(英文) Renewable Energy, Sustainability and the Environment, Nanotechnology
CiteScore
13.00
自引率
0.00%
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0
审稿时长
50 days
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