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关于钴簇与水和氧气反应的本质。

On the nature of Co clusters reacting with water and oxygen.

作者信息

Geng Lijun, Wang Pengju, Lin Shiquan, Shi Ruili, Zhao Jijun, Luo Zhixun

机构信息

Beijing National Laboratory for Molecular Sciences (BNLMS), State Key Laboratory for Structural Chemistry of Unstable and Stable Species, Institute of Chemistry, Chinese Academy of Sciences, Beijing, P. R. China.

Key Laboratory of Materials Modification by Laser, Ion and Electron Beams, Ministry of Education, Dalian University of Technology, Dalian, P. R. China.

出版信息

Commun Chem. 2024 Mar 30;7(1):68. doi: 10.1038/s42004-024-01159-6.

Abstract

Bulk cobalt does not react with water at room temperature, but cobalt nanometals could yield corrosion at ambient conditions. Insights into the cobalt cluster reactions with water and oxygen enable us to better understand the interface reactivity of such nanometals. Here we report a comprehensive study on the gas-phase reactions of Co clusters with water and oxygen. All these Co clusters were found to react with oxygen, but only anionic cobalt clusters give rise to water dissociation whereas the cationic and neutral ones are limited to water adsorption. We elucidate the influences of charge states, bonding modes and dehydrogenation mechanism of water on typical cobalt clusters. It is unveiled that the additional electron of anionic Co clusters is not beneficial to HO adsorption, but allows for thermodynamics- and kinetics-favourable H atom transfer and dehydrogenation reactions. Apart from the charge effect, size effect and spin effect play a subtle role in the reaction process. The synergy of multiple metal sites in Co clusters reduces the energy barrier of the rate-limiting step enabling hydrogen release. This finding of water dissociation on cobalt clusters put forward new connotations on the activity series of metals, providing new insights into the corrosion mechanism of cobalt nanometals.

摘要

块状钴在室温下不与水反应,但钴纳米金属在环境条件下可能会发生腐蚀。深入了解钴簇与水和氧气的反应,有助于我们更好地理解此类纳米金属的界面反应性。在此,我们报告了一项关于钴簇与水和氧气气相反应的全面研究。发现所有这些钴簇都能与氧气反应,但只有阴离子钴簇会导致水的解离,而阳离子和中性钴簇则仅限于水的吸附。我们阐明了电荷状态、键合模式和水的脱氢机制对典型钴簇的影响。结果表明,阴离子钴簇的额外电子不利于羟基吸附,但有利于热力学和动力学上有利的氢原子转移和脱氢反应。除了电荷效应外,尺寸效应和自旋效应在反应过程中也起着微妙的作用。钴簇中多个金属位点的协同作用降低了限速步骤的能垒,从而实现了氢的释放。钴簇上水解离的这一发现为金属活性序列提出了新的内涵,为钴纳米金属的腐蚀机制提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7c63/10981683/7e51d79a552a/42004_2024_1159_Fig1_HTML.jpg

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