催化作用
电子转移
儿茶酚
离解(化学)
解吸
吸附
电子结构
基态
化学
电子
结晶学
活动站点
材料科学
光化学
物理化学
计算化学
物理
原子物理学
有机化学
量子力学
作者
Yuan Meng,Nannan Xia,Xun Hu,Fei He
出处
期刊:Small
[Wiley]
日期:2024-07-16
标识
DOI:10.1002/smll.202403850
摘要
Abstract Boosting the biomimetic catalytic activity of nanozyme is important for its potential application. One common strategy to achieve this goal mainly focused on manipulating the electronic state of metal site through the first coordination shell to modulate the adsorption/desorption strength of related reactant, intermediate and/or product, but remained challenging. Taking Cu‐based catecholase‐mimicking nanozyme for example, this work herein reports a different strategy involving amino‐induced modulation of electronic state through the second shell to raise the electron density of Cu site, which further triggers the repulsion effect between neighboring geminal Cu centers to increase the Cu─Cu distance. The resulting nanozyme with electron‐rich Cu site (DT‐Cu) presents a lower work function and an upshifted d‐band center in comparison with its counterpart (i.e., relatively electron‐deficient TA‐Cu), which promotes the electron transfer and enhances the adsorption strengths of Cu site for O 2 , catechol and H 2 O 2 intermediate. The longer Cu─Cu distance of DT‐Cu accelerated the O─O bond dissociation of H 2 O 2 intermediate. This expedites the oxygen reduction process during catecholase‐like catalysis, which together with the enhanced O 2 /H 2 O 2 /catechol adsorption corporately boosts the catecholase‐like activity of DT‐Cu.
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