Crystalline Metal–Organic Framework Coatings Engineered via Metal–Phenolic Network Interfaces

材料科学 纳米技术 无定形固体 金属有机骨架 多孔性 涂层 金属 化学工程 气体分离 渗透 选择性 复合材料 化学 有机化学 冶金 催化作用 吸附 工程类 生物化学
作者
Tianzheng Wang,Zhixing Lin,Omid Mazaheri,Jingqu Chen,Wanjun Xu,Shuaijun Pan,Chan‐Jin Kim,Jiajing Zhou,Joseph J. Richardson,Frank Caruso
出处
期刊:Angewandte Chemie [Wiley]
被引量:3
标识
DOI:10.1002/anie.202410043
摘要

Crystalline metal–organic frameworks (MOFs) have garnered extensive attention owing to their highly ordered porous structure and physicochemical properties. However, their practical application often requires their integration with various substrates, which is challenging because of their weakly adhesive nature and the diversity of substrates that exhibit different properties. Herein, we report the use of amorphous metal–phenolic network coatings to facilitate the growth of crystalline MOF coatings on various particle and planar substrates. Crystalline MOFs with different metal ions and morphologies were successfully deposited on substrates (13 types) of varying sizes, shapes, and surface chemistries. Furthermore, the physicochemical properties of the coated crystalline MOFs (e.g., composition, thickness) could be tuned using different synthesis conditions. The engineered MOF‐coated membranes demonstrated excellent liquid and gas separation performance, exhibiting a high H2 permeance of 63200 GPU and a H2/CH4 selectivity of 10.19, likely attributable to the thin nature of the coating (~180 nm), which can be realized using the present strategy. Considering the vast array of MOFs available (>90,000) and the diversity of substrates, this work is expected to pave the way for creating a wide range of MOF composites and coatings with potential applications in biomedicine, environmental science, and agriculture.
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