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Ligand effect on switching the rate-determining step of water oxidation in atomically precise metal nanoclusters

Chemistry

Ligand effect on switching the rate-determining step of water oxidation in atomically precise metal nanoclusters

Z. Liu, H. Tan, et al.

This groundbreaking study by Zhihe Liu, Hua Tan, Bo Li, Zehua Hu, De-en Jiang, Qiaofeng Yao, Lei Wang, and Jianping Xie explores how ligand engineering can dramatically enhance the kinetics of the oxygen evolution reaction in atomically precise Au25 nanoclusters. The research reveals that using para-mercaptobenzoic acid significantly boosts catalytic performance, unlocking new pathways for OER efficiency.

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~3 min • Beginner • English
Abstract
The ligand effects of atomically precise metal nanoclusters on electrocatalysis kinetics have been rarely revealed. Herein, we employ atomically precise Au25 nanoclusters with different ligands (i.e., para-mercaptobenzoic acid, 6-mercaptohexanoic acid, and homocysteine) as paradigm electrocatalysts to demonstrate oxygen evolution reaction rate-determining step switching through ligand engineering. Au25 nanoclusters capped by para-mercaptobenzoic acid exhibit a better performance with nearly 4 times higher than that of Au25 NCs capped by other two ligands. We deduce that para-mercaptobenzoic acid with a stronger electron-withdrawing ability establishes more partial positive charges on Au(I) (i.e., active sites) for facilitating feasible adsorption of OH− in alkaline media. X-ray photo-electron spectroscopy and theoretical study indicate a profound electron transfer from Au(I) to para-mercaptobenzoic acid. The Tafel slope and in situ Raman spectroscopy suggest different ligands trigger different rate-determining step for these Au25 nanoclusters. The mechanistic insights reported here can add to the acceptance of atomically precise metal nanoclusters as effective electrocatalysts.
Publisher
Nature Communications
Published On
Jun 08, 2023
Authors
Zhihe Liu, Hua Tan, Bo Li, Zehua Hu, De-en Jiang, Qiaofeng Yao, Lei Wang, Jianping Xie
Tags
oxygen evolution reaction
Au25 nanoclusters
ligand engineering
catalysis
mechanistic insights
electron-withdrawing ligands
catalytic performance
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