模块化设计
金属有机骨架
制作
材料科学
基质(化学分析)
纳米技术
计算机科学
分布式计算
拓扑(电路)
化学
数学
替代医学
有机化学
复合材料
吸附
病理
组合数学
操作系统
医学
作者
Yifan Gu,Yi‐nan Wu,Liangchun Li,Wei Chen,Fengting Li,Susumu Kitagawa
标识
DOI:10.1002/anie.201709738
摘要
Abstract Fabrication of hybrid MOF‐on‐MOF heteroarchitectures can create novel and multifunctional platforms to achieve desired properties. However, only MOFs with similar crystallographic parameters can be hybridized by the classical epitaxial growth method (EGM), which largely suppressed its applications. A general strategy, called internal extended growth method (IEGM), is demonstrated for the feasible assembly of MOFs with distinct crystallographic parameters in an MOF matrix. Various MOFs with diverse functions could be introduced in a modular MOF matrix to form 3D core–satellite pluralistic hybrid system. The number of different MOF crystals interspersed could be varied on demand. More importantly, the different MOF crystals distributed in individual domains could be used to further incorporate functional units or enhance target functions.
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