催化作用
修边
过电位
星团(航天器)
协调数
纳米技术
化学物理
铂金
化学
材料科学
组合化学
计算化学
计算机科学
物理化学
有机化学
离子
操作系统
电极
电化学
程序设计语言
作者
Fengkun Hao,Jing Zhong,Fengqian Hao,Shaorou Ke,Yanghong Li,Zhengyi Mao,Yunhu He,Tong Gao,Linlin Wang,Shuohan Li,Minghao Fang,Zhaohui Huang,Xiaoxue Chang,Ruiwen Shao,Jian Lü,Xin Min
标识
DOI:10.1002/anie.202504828
摘要
The coordination number (CN) in atomic cluster (AC) catalysts endows their catalytic performance with flexible tunability. However, the quantitative relationship between the coordination number (CN) and catalytic activity of atomic cluster (AC) catalysts remains ambiguity. Herein, inspired by the gardeners trimming plants branches to obtain ornamental value shape. We propose a “directional trimming” strategy to obtain a series of AC catalysts with wide range of Cl CN and establish an inverted volcano curve to explain the effect of CN on hydrogen evolution reaction (HER). Moreover, Pt/CB‐90 (moderate Cl CN of 3.7) exhibits the lowest overpotential of 22.94 mV at 10 mA cm‐2 and outstanding mass activity (25 times to commercial Pt/C). This proposed synthesis strategy fully utilizes the precursor atoms and is widely applicable. The reaction liquid can be reused up to 20 times to obtain 1130 mg catalysts without introducing any other chemicals. Additionally, Theoretical calculations highlight the appropriate Cl CN benefits the HER on Pt2 ACs. This fundamental understanding of the role of CN in catalytic activity offers valuable guidance to promote performance in various catalytic reactions.
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