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用于绿色制氢的颗粒光催化剂材料的界面设计

Interfacial Design of Particulate Photocatalyst Materials for Green Hydrogen Production.

作者信息

Higashi Tomohiro, Domen Kazunari

机构信息

Institute for Tenure Track Promotion, University of Miyazaki, 1-1 Gakuen-Kibanadai-Nishi, Miyazaki, 889-2192, Japan.

Office of University Professors, The University of Tokyo, 2-11-16 Yayoi, Bunkyo-ku, Tokyo, 113-8656, Japan.

出版信息

ChemSusChem. 2024 Nov 11;17(21):e202400663. doi: 10.1002/cssc.202400663. Epub 2024 Jul 8.

Abstract

Green hydrogen production using particulate photocatalyst materials has attracted much attention in recent years because this process could potentially lead to inexpensive and scalable solar-to-chemical energy conversion systems. Although the development of efficient particulate photocatalysts enabling one-step overall water splitting (OWS) with solar-to-hydrogen efficiencies in excess of 10 % remains challenging, promising photocatalyst candidates exhibiting OWS activity have been demonstrated. This review provides a comprehensive introduction to the solar-to-hydrogen energy conversion process of semiconductor photocatalyst materials and highlights recent advances in photocatalytic OWS via both one-step and two-step photoexcitation processes. The review also covers recent developments in the photocatalytic OWS of SrTiO, including the establishment of large-scale photocatalytic systems, interfacial design using cocatalysts to enhance water splitting activity, and its photoelectrochemical (PEC) properties at the electrified solid/liquid interface. In addition, there is a special focus on visible-light-absorbing oxynitride and oxysulfide particulate photocatalysts with absorption edges near 600 nm. Methods for photocatalyst preparation and surface modification, as well as PEC properties, are also discussed. The semiconductor properties of particulate photocatalysts obtained from photoelectroanalytical evaluations using particulate photoelectrodes are evaluated. This review is intended to provide guidelines for the future development of particulate photocatalysts capable of efficient and stable OWS.

摘要

近年来,使用颗粒光催化剂材料生产绿色氢能备受关注,因为这一过程有可能带来廉价且可扩展的太阳能到化学能转换系统。尽管开发出能实现一步全水分解(OWS)且太阳能到氢能效率超过10%的高效颗粒光催化剂仍具有挑战性,但已证明有前景的光催化剂候选物具有OWS活性。本综述全面介绍了半导体光催化剂材料的太阳能到氢能转换过程,并重点介绍了通过一步和两步光激发过程实现光催化OWS的最新进展。该综述还涵盖了SrTiO光催化OWS的最新进展,包括大规模光催化系统的建立、使用助催化剂增强水分解活性的界面设计以及其在带电固/液界面的光电化学(PEC)性质。此外,特别关注吸收边缘接近600 nm的可见光吸收型氮氧化物和氧硫化物颗粒光催化剂。还讨论了光催化剂的制备和表面改性方法以及PEC性质。评估了使用颗粒光电极通过光电分析评估获得的颗粒光催化剂的半导体性质。本综述旨在为能够实现高效稳定OWS的颗粒光催化剂的未来发展提供指导。

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