Distal Synergistic Effect in Bimetal-Organic Framework for Superior Catalytic Water Oxidation

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Date

2023

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American Chemical Society

Abstract

Metal-organic frameworks (MOFs) are emerging as promising electro-catalysts for the oxygen evolution reaction (OER). The bimetallic design strategy was further adopted in MOFs to elevate the OER performance by a synergistic effect. The proximal metal-oxygen-metal bonding configuration with typical 3d<inf>π</inf>-2p<inf>π</inf>-3d<inf>π</inf> interaction was apparently essential for an effective electronic coupling between the metal centers. Here, we report an example of distal synergy in a bimetal-organic framework exhibiting a better OER activity than the monometallic counterparts, as well as the conventional proximal synergy. To achieve a current density of 10 mA·cm-2, our electrodeposited bimetallic MOF, Co-Ni(TCNQ)<inf>2</inf>(H<inf>2</inf>O)<inf>2</inf> (TCNQ = 7,7,8,8-tetracyanoquinodimethane), on a glassy-carbon electrode required an overpotential value of 220 mV. X-ray photoelectron spectroscopy (XPS) and density functional theory (DFT) calculations revealed distinctive electronic coupling between the Co(II)-3d7 and Ni(II)-3d8 centers, despite being 9 Å apart, leading to an overall charge delocalization in the structure via TCNQ. © 2023 American Chemical Society.

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Keywords

Bimetals, Catalytic oxidation, Chemical bonds, Cobalt compounds, Design for testability, Glass membrane electrodes, Nickel compounds, Organometallics, Oxygen, X ray photoelectron spectroscopy, Bimetallics, Design strategies, Electro catalysts, Electronic coupling, Metal bonding, Metalorganic frameworks (MOFs), Organics, Reaction performance, Synergistic effect, Water oxidation, Density functional theory

Citation

ACS Energy Letters, 2023, 8, 10, pp. 4465-4473

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