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Structure‐Activity Relationship of Defective Metal‐Based Photocatalysts for Water Splitting: Experimental and Theoretical Perspectives

机译:缺陷金属基光催化剂在水分解中的结构-活性关系:实验和理论观点

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摘要

Photocatalytic water splitting is promising for hydrogen energy production using solar energy and developing highly efficient photocatalysts is challenging. Defect engineering is proved to be a very useful strategy to promote the photocatalytic performance of metal‐based photocatalysts, however, the vital role of defects is still ambiguous. This work comprehensively reviews point defective metal‐based photocatalysts for water splitting, focusing on understanding the defects' disorder effect on optical adsorption, charge separation and migration, and surface reaction. The controllable synthesis and tuning strategies of defective structure to improve the photocatalytic performance are summarized, then the characterization techniques and density functional theory calculations are discussed to unveil the defect structure, and analyze the defects induced electronic structure change of catalysts and its ultimate effect on the photocatalytic activity at the molecular level. Finally, the challenge in developing more efficient defective metal‐based photocatalysts is outlined. This work may help further the understanding of the fundamental role of defect structure in the photocatalytic reaction process and guide the rational design and fabrication of highly efficient and low‐cost photocatalysts.
机译:光催化水分解有望利用太阳能产生氢能,开发高效的光催化剂具有挑战性。缺陷工程被证明是提高金属基光催化剂光催化性能的非常有用的策略,但是,缺陷的重要作用仍然是模棱两可的。这项工作全面回顾了用于水分解的点缺陷金属基光催化剂,重点是了解缺陷对光吸附,电荷分离和迁移以及表面反应的无序影响。总结了缺陷结构的可控合成和调节策略,以提高光催化性能,然后讨论了表征技术和密度泛函理论计算以揭示缺陷结构,并分析了缺陷引起的催化剂电子结构变化及其对催化剂的最终影响。在分子水平上具有光催化活性。最后,概述了开发更有效的有缺陷的金属基光催化剂所面临的挑战。这项工作可能有助于进一步了解缺陷结构在光催化反应过程中的基本作用,并指导合理设计和制造高效,低成本的光催化剂。

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