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调控钴单原子催化剂中第二壳层配位以实现高选择性氢化反应

Regulating Second-Shell Coordination in Cobalt Single-Atom Catalysts toward Highly Selective Hydrogenation.

作者信息

Duan Yunxia, Xia Yongming, Ling Yuxuan, Zhou Shijie, Liu Xuehui, Lan Yinghui, Yin Xiong, Yang Yusen, Yan Xiaoying, Liang Minghui, Hong Song, Zhang Lipeng, Wang Leyu

出版信息

ACS Nano. 2024 Aug 13;18(32):21326-21335. doi: 10.1021/acsnano.4c05637. Epub 2024 Jul 31.

Abstract

Manipulating the local coordination environment of central metal atoms in single-atom catalysts (SACs) is a powerful strategy to exploit efficient SACs with optimal electronic structures for various applications. Herein, Co-SACs featured by Co single atoms with coordinating S atoms in the second shell dispersed in a nitrogen-doped carbon matrix have been developed toward the selective hydrogenation of halo-nitrobenzene. The location of the S atom in the model Co-SAC is verified through synchrotron-based X-ray absorption spectroscopy and theoretical calculations. The resultant Co-SACs containing second-coordination shell S atoms demonstrate excellent activity and outstanding durability for selective hydrogenation, superior to most precious metal-based catalysts. In situ characterizations and theoretical results verify that high activity and selectivity are attributed to the advantageous formation of the Co-O bond between -chloronitrobenzene and Co atom at CoN-S moieties and the lower free energy and energy barriers of the reaction. Our findings unveil the correlation between the performance and second-shell coordination atom of SACs.

摘要

调控单原子催化剂(SACs)中中心金属原子的局部配位环境是开发具有最佳电子结构的高效SACs以用于各种应用的有力策略。在此,已开发出以在氮掺杂碳基质中分散的第二壳层中具有配位S原子的Co单原子为特征的Co-SACs用于卤代硝基苯的选择性氢化。通过基于同步加速器的X射线吸收光谱和理论计算验证了模型Co-SAC中S原子的位置。所得含有第二配位壳层S原子的Co-SACs在选择性氢化方面表现出优异的活性和出色的耐久性,优于大多数贵金属基催化剂。原位表征和理论结果证实,高活性和选择性归因于在CoN-S部分氯硝基苯与Co原子之间有利地形成Co-O键以及反应的较低自由能和能垒。我们的研究结果揭示了SACs的性能与第二壳层配位原子之间的相关性。

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