网状结缔组织
纳米尺度
纳米技术
化学
共价键
比例(比率)
多孔性
固态化学
原子单位
材料科学
有机化学
物理
量子力学
医学
病理
作者
Ralph Freund,Stefano Canossa,Seth M. Cohen,Wei Yan,Hexiang Deng,Vincent Guillerm,Mohamed Eddaoudi,David J. Madden,David Fairen-Jimenez,Hao Lyu,Lauren K. Macreadie,Zhe Ji,Yuanyuan Zhang,Bo Wang,Frederik Haase,Christof Wöll,Orysia Zaremba,Jacopo Andreo,Stefan Wuttke,Christian S. Diercks
标识
DOI:10.1002/anie.202101644
摘要
At its core, reticular chemistry has translated the precision and expertise of organic and inorganic synthesis to the solid state. While initial excitement over metal-organic frameworks (MOFs) and covalent organic frameworks (COFs) was undoubtedly fueled by their unprecedented porosity and surface areas, the most profound scientific innovation of the field has been the elaboration of design strategies for the synthesis of extended crystalline solids through strong directional bonds. In this contribution we highlight the different classes of reticular materials that have been developed, how these frameworks can be functionalized, and how complexity can be introduced into their backbones. Finally, we show how the structural control over these materials is being extended from the molecular scale to their crystal morphology and shape on the nanoscale, all the way to their shaping on the bulk scale.
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