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单原子催化剂(SACs)用于光催化 CO 还原与 H 2 O:活性、产物选择性、稳定性和表面化学。

Single-Atom Catalysts (SACs) for Photocatalytic CO Reduction with H O: Activity, Product Selectivity, Stability, and Surface Chemistry.

机构信息

Department of Energy Science & Engineering, DGIST, 333 Techno Jungang-daero, Hyeonpung-eup, Dalseong-gun, Daegu, 42988, Republic of Korea.

出版信息

Small. 2022 Jul;18(29):e2201428. doi: 10.1002/smll.202201428. Epub 2022 Jun 13.

DOI:10.1002/smll.202201428
PMID:35695355
Abstract

In recent years, single-atom catalysts (SACs) have attracted the interest of researchers owing to their suitability for various catalytic applications. For instance, their optoelectronic features, site-specific activity, and cost-effectiveness make SACs ideal for photocatalytic CO reduction. The activity, product selectivity, and photostability of SACs depend on various factors such as the nature of the metal/support material, the interaction between the metal atoms and support, light-harvesting ability, charge separation behavior, CO adsorption ability, active sites, and defects. Consequently, it is necessary to investigate these factors in depth to elucidate the working principle(s) of SACs for catalytic applications. Herein, the recent progress in the development of SACs for photocatalytic CO reduction with H O is reviewed. First, a brief overview of CO photoreduction and SACs for CO conversion is provided. Several synthesis strategies and useful techniques for characterizing SACs employed in heterogeneous catalysis are then described. Next, the challenges of SACs for photocatalytic CO reduction and related optimization strategies, in terms of activity, product selectivity, and stability, are explored. The progress in the development of noble metal- and transition metal-based SACs and dual-SACs for photocatalytic CO reduction is discussed. Finally, the prospects of SACs for CO reduction are considered.

摘要

近年来,由于单原子催化剂 (SACs) 适用于各种催化应用,因此引起了研究人员的兴趣。例如,SACs 的光电特性、特定位置的活性和成本效益使其成为光催化 CO 还原的理想选择。SACs 的活性、产物选择性和光稳定性取决于多种因素,例如金属/载体材料的性质、金属原子与载体之间的相互作用、光捕获能力、电荷分离行为、CO 吸附能力、活性位点和缺陷。因此,有必要深入研究这些因素,以阐明 SACs 在催化应用中的工作原理。本文综述了近年来用于光催化 CO 还原与 H2O 的 SACs 的最新进展。首先,简要概述了 CO 的光还原和用于 CO 转化的 SACs。然后描述了几种用于异相催化的 SACs 的合成策略和有用的表征技术。接下来,探讨了 SACs 在光催化 CO 还原方面的挑战以及提高活性、产物选择性和稳定性的相关优化策略。讨论了贵金属和过渡金属基 SACs 以及双 SACs 用于光催化 CO 还原的进展。最后,考虑了 SACs 在 CO 还原方面的前景。

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