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用于太阳能到化学能转换的双缺陷半导体光催化剂:进展与挑战

Dual-defect semiconductor photocatalysts for solar-to-chemical conversion: advances and challenges.

作者信息

Li Tianqi, Li Yufeng, Guo Changfa, Hu Yong

机构信息

Key Laboratory of the Ministry of Education for Advanced Catalysis Materials, Department of Chemistry, Zhejiang Normal University, Jinhua, 321004, China.

College of Chemistry and Materials Engineering, Zhejiang A&F University, Hangzhou, 311300, China.

出版信息

Chem Commun (Camb). 2024 Feb 22;60(17):2320-2348. doi: 10.1039/d3cc06102g.

Abstract

Among the renewable energy technologies to deal with increasing energy crisis and environmental concerns, solar-to-chemical conversion photocatalysis holds great promise for sustainable energy supply. To date, a variety of modification strategies with different types of semiconducting materials have been proposed to boost photocatalytic efficiency. Recently, dual-defect semiconductor photocatalysts have emerged as an advantageous candidate with superior performance in improving photocatalytic activity compared to their defect-free or single-defect counterparts. In this review, focus is laid on the advances of dual-defect semiconductor photocatalysts for energy photocatalysis. Possible schemes for two different defects within a single semiconductor are firstly sorted based on the types of defects, and synthesis strategies to achieve various defect schemes as well as techniques to characterize different defects are then introduced. In particular, the effect of different defects on photocatalytic performance is emphasized, and the advances in dual-defect semiconductors for solar-to-chemical conversions are summarized based on different defect schemes. Finally, the future challenges and opportunities of dual-defect semiconductors for photocatalysis are discussed. This article is expected to provide an overall insight into existing dual-defect semiconductor photocatalysts and inspire the development of new defect-rich materials for photocatalytic energy production.

摘要

在应对日益严重的能源危机和环境问题的可再生能源技术中,太阳能到化学能的转换光催化对于可持续能源供应具有巨大潜力。迄今为止,已经提出了各种使用不同类型半导体材料的改性策略来提高光催化效率。最近,双缺陷半导体光催化剂已成为一种优势候选材料,与无缺陷或单缺陷的同类材料相比,在提高光催化活性方面具有卓越性能。在这篇综述中,重点关注双缺陷半导体光催化剂在能源光催化方面的进展。首先根据缺陷类型对单一半导体中两种不同缺陷的可能方案进行分类,然后介绍实现各种缺陷方案的合成策略以及表征不同缺陷的技术。特别强调了不同缺陷对光催化性能的影响,并基于不同的缺陷方案总结了双缺陷半导体在太阳能到化学能转换方面的进展。最后,讨论了双缺陷半导体光催化未来面临的挑战和机遇。本文期望能全面洞察现有的双缺陷半导体光催化剂,并激发用于光催化能源生产的新型富缺陷材料的开发。

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