化学
铜
反应性(心理学)
水溶液
催化作用
水解
神经毒剂
双水相体系
还原剂
组合化学
金属
无机化学
有机化学
乙酰胆碱酯酶
替代医学
酶
病理
医学
作者
Eric M. Johnson,Mikaela C. Boyanich,Bradley Gibbons,Nicholas S. Sapienza,Xiaozhou Yang,Ayman M. Karim,John R. Morris,Diego Troya,Amanda J. Morris
出处
期刊:Inorganic Chemistry
[American Chemical Society]
日期:2022-05-25
卷期号:61 (22): 8585-8591
被引量:11
标识
DOI:10.1021/acs.inorgchem.2c01351
摘要
Metal–organic frameworks (MOFs) have shown great success in aqueous-phase hydrolysis of nerve agents, with some even showing promise in the gas phase. However, both aqueous-phase reactivity and gas-phase reactivity are hindered because of the binding of the hydrolyzed products to the MOF nodes in a stable, bridging configuration, which limits turnover. Single transition-metal atoms in MOFs have been a growing field of interest for catalytic applications, and single atoms have been proposed to prevent the unwanted bridged conformation and increase catalytic turnover. To date, there has been little experimental evidence to support the hypothesis. Herein, we report two copper single atom-modified UiO-66 MOFs for nerve-agent simulant degradation. Despite the capping of highly active Zr 4+ nodes with fewer Lewis acidic Cu n+ atoms, the reactivity of both CuMOFs approaches that of native UiO-66 under aqueous conditions. Computational studies reveal that the Cu coordination environment impairs product inhibition with respect to the native MOF.
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