单宁酸
电化学
化学
质子化
氨
沸石咪唑盐骨架
水溶液中的金属离子
活动站点
超级电容器
无机化学
金属
化学工程
组合化学
金属有机骨架
离子
有机化学
吸附
催化作用
电极
物理化学
工程类
作者
Yibo Lu,Guangxun Zhang,Huijie Zhou,Shuai Cao,Yi Zhang,Shuli Wang,Huan Pang
标识
DOI:10.1002/anie.202311075
摘要
Abstract The limited active sites and poor acid‐alkaline solution stability of metal–organic frameworks (MOFs), significantly limit their wider application. In this study, the acid property of tannic acid (TA) was used as an etchant to etch the surface‐active sites. Subsequently, the further chelation of the protonated TA with the exposed metal active site can effectively protect the metal ions. Meanwhile, the TA provided a large amount of phenolic hydroxyl groups, which can greatly improve the stability of imidazolate‐coordinated MOFs. The electrochemical test results indicated that the MOFs composite materials synthesized using this scheme had high specific capacitance and stability. And the mechanism of its electrochemical reaction process was explored through in situ X‐ray diffraction (XRD) and theoretical calculations. In addition, the same treatment was carried out through a series of carboxyl‐coordinated MOFs, which further confirmed the principle of this scheme to obtain a higher active site and stability. This paper explains the mechanism of functionalization of nano‐MOFs by polyphenolic compounds, providing new ideas for the research of nano‐MOFs.
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