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稀土单原子催化剂:光电催化的新前沿。

Rare-Earth Single-Atom Catalysts: A New Frontier in Photo/Electrocatalysis.

机构信息

Jiangsu Key Laboratory of New Power Batteries, Jiangsu Collaborative Innovation Center of Biomedical Functional Materials, School of Chemistry and Materials Science, Nanjing Normal University, Nanjing, 210023, P. R. China.

Advanced Institute for Materials Research (WPI-AIMR), Tohoku University, Sendai, 980-8577, Japan.

出版信息

Small Methods. 2022 Aug;6(8):e2200413. doi: 10.1002/smtd.202200413. Epub 2022 Jun 25.

Abstract

Single-atom catalysts (SACs) provide well-defined active sites with 100% atom utilization, and can be prepared using a wide range of support materials. Therefore, they are attracting global attention, especially in the fields of energy conversion and storage. To date, research has focused on transition-metal and precious-metal-based SACs. More recently, rare-earth (RE)-based SACs have emerged as a new frontier in photo/electrocatalysis owing to their unique electronic structure arising from the spin-orbit coupling of the 4f and valence orbitals, unsaturated coordination environment, and unique behavior as charge-transport bridges. However, a systematic review on the role of the RE active sites, catalytic mechanisms, and synthetic methods for RE SACs is lacking. Therefore, in this review, the latest developments in RE SACs having applications in photo/electrocatalysis are summarized and discussed. First, the theoretical advantages of RE SACs for photo/electrocatalysis are briefly introduced, focusing on the roles of the 4f orbitals and coupled energy levels. In addition, the most recent research progress on RE SACs is summarized for several important photo/electrocatalytic reactions and the corresponding catalytic mechanisms are discussed. Further, the synthetic strategies for the production of RE SACs are reported. Finally, challenges for the development of RE SACs are highlighted, along with future research directions and perspectives.

摘要

单原子催化剂 (SACs) 提供了具有 100%原子利用率的明确活性位点,并可使用广泛的支持材料进行制备。因此,它们引起了全球的关注,特别是在能源转换和存储领域。迄今为止,研究集中在过渡金属和贵金属基 SACs 上。最近,由于 4f 和价轨道的自旋轨道耦合、不饱和配位环境以及作为电荷传输桥的独特行为,基于稀土 (RE) 的 SACs 在光/电催化中作为一个新的前沿领域出现。然而,缺乏对 RE 活性位、催化机制和 RE SACs 合成方法的系统综述。因此,在这篇综述中,总结和讨论了在光/电催化中具有应用的 RE SACs 的最新发展。首先,简要介绍了 RE SACs 在光/电催化中的理论优势,重点介绍了 4f 轨道和耦合能级的作用。此外,总结了 RE SACs 在几个重要的光/电催化反应中的最新研究进展,并讨论了相应的催化机制。此外,还报告了生产 RE SACs 的合成策略。最后,强调了开发 RE SACs 的挑战,并提出了未来的研究方向和展望。

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