4.8 Review

2D MOFs and their derivatives for electrocatalytic applications: Recent advances and new challenges

期刊

COORDINATION CHEMISTRY REVIEWS
卷 472, 期 -, 页码 -

出版社

ELSEVIER SCIENCE SA
DOI: 10.1016/j.ccr.2022.214777

关键词

Metal -organic framework; Hydrogen evolution reaction; Oxygen reduction reaction; Carbon dioxide reduction reaction; Nitrogen reduction reaction

资金

  1. National Natural Science Foun [22075099]
  2. Education Department of Jilin Province [JJKH20220967KJ, JJKH20220968CY]

向作者/读者索取更多资源

Metal organic frameworks (MOFs) are promising electrocatalysts due to their high porosity, large specific surface area, and adjustable structure. This article summarizes the synthesis strategies of 2D MOFs and their derivatives, as well as the factors influencing the geometries and electronic structures of active sites. The electrocatalytic applications of 2D MOFs and their derivatives in various reactions are reviewed, and the effect of geometric construction and electronic configuration on electrocatalytic performance is discussed. Finally, the development prospects and challenges of 2D MOFs and their derivatives are proposed.
Metal organic frameworks (MOFs) are promising electrocatalysts due to their high porosity, large specific surface area and adjustable structure. Especially, two-dimensional (2D) MOFs with ultra-thin structure provide more active sites and shorter diffusion distance for heterogeneous catalytic reactions. However, the poor conductivity and poor stability of 2D MOFs impede their practical electrocatalytic applications greatly. Therefore, 2D MOF-derived transition metal carbides, sulfides, phosphides, oxides, and single-atom catalysts have been fabricated by carbonization, vulcanization, phosphorization or oxidation strategies, which improve the conductivity and stability significantly. Here, the synthesis strategies of 2D MOFs and their derivatives are summarized, and the factors affecting the geometries and electronic structures of active sites are commented in detail. The electrocatalytic applications of 2D MOFs and their derivatives in oxygen evolution reaction (OER), hydrogen evolution reaction (HER), oxygen reduction reaction (ORR), carbon dioxide reduction reaction (CO2RR) and nitrogen reduction reaction (NRR) are reviewed. The effect of the geometric construction and electronic configuration of active sites (including metals, nonmetals, and defects) of 2D MOFs and their derivatives on the electrocatalytic performance is detailedly discussed by combining experimental achievements and theoretical analysis. Finally, the development prospects and challenges of 2D MOFs and their derivatives are proposed. (c) 2022 Elsevier B.V. All rights reserved.

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