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调整原子界面处的电子和空间相互作用以增强析氧反应

Tuning the Electronic and Steric Interaction at the Atomic Interface for Enhanced Oxygen Evolution.

作者信息

Feng Chen, Zhang Zhirong, Wang Dongdi, Kong Yuan, Wei Jie, Wang Ruyang, Ma Peiyu, Li Hongliang, Geng Zhigang, Zuo Ming, Bao Jun, Zhou Shiming, Zeng Jie

机构信息

Hefei National Research Center for Physical Sciences at the Microscale, Key Laboratory of Strongly-Coupled Quantum Matter Physics of Chinese Academy of Sciences, National Synchrotron Radiation Laboratory, Key Laboratory of Surface and Interface Chemistry and Energy Catalysis of Anhui Higher Education Institutes, Department of Chemical Physics, University of Science and Technology of China, Hefei 230026, Anhui, P. R. China.

出版信息

J Am Chem Soc. 2022 Jun 1;144(21):9271-9279. doi: 10.1021/jacs.2c00533. Epub 2022 May 12.

Abstract

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.

摘要

多相催化剂的二维表面或一维界面对于确定反应中间体的吸附强度和构型以实现所需活性至关重要。近年来,单原子催化剂的发展使得人们能够从原子水平理解催化过程。然而,一维界面的传统概念和机制是否适用于零维单原子仍不清楚。在这项工作中,我们通过安排单原子的位置来探索它们的界面相互作用,以改善析氧性能。当铱单原子被限制在CoOOH晶格中时,Ir和Co之间的有效电子转移调节了含氧中间体的吸附强度。相比之下,锚定在CoOOH表面的原子铱物种在电子结构上引起的变化不明显,而其Ir-OH-Co界面与关键中间体的空间相互作用在降低其析氧能垒方面起主要作用。

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