化学
铱
位阻效应
化学物理
催化作用
吸附
氧原子
氧气
Atom(片上系统)
电子结构
电子转移
电子效应
格子(音乐)
反应中间体
光化学
分子
计算化学
物理化学
立体化学
有机化学
计算机科学
嵌入式系统
物理
声学
作者
Feng Chen,Zhirong Zhang,Dongdi Wang,Yuan Kong,Jie Wei,Ruyang Wang,Peiyu Ma,Hongliang Li,Zhigang Geng,Ming J. Zuo,Jun Bao,Shiming Zhou,Jie Zeng
摘要
The two-dimensional surface or one-dimensional interface of heterogeneous catalysts is essential to determine the adsorption strengths and configurations of the reaction intermediates for desired activities. Recently, the development of single-atom catalysts has enabled an atomic-level understanding of catalytic processes. However, it remains obscure whether the conventional concept and mechanism of one-dimensional interface are applicable to zero-dimensional single atoms. In this work, we arranged the locations of single atoms to explore their interfacial interactions for improved oxygen evolution. When iridium single atoms were confined into the lattice of CoOOH, efficient electron transfer between Ir and Co tuned the adsorption strength of oxygenated intermediates. In contrast, atomic iridium species anchored on the surface of CoOOH induced inappreciable modification in electronic structures, whereas steric interactions with key intermediates at its Ir-OH-Co interface played a primary role in reducing its energy barrier toward oxygen evolution.
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