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首页> 外文期刊>Angewandte Chemie >Designing Hydrogen-Bonded Organic Frameworks (HOFs) with Permanent Porosity
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Designing Hydrogen-Bonded Organic Frameworks (HOFs) with Permanent Porosity

机译:设计具有永久性孔隙率的氢键有机框架(HOFS)

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摘要

Designing organic components that can be used to construct porous materials enables the preparation of tailored functionalized materials. Research into porous materials has seen a resurgence in the past decade as a result of finding of self-standing porous molecular crystals (PMCs). Particularly, a number of crystalline systems with permanent porosity that are formed by self-assembly through hydrogen bonding (H-bonding) have been developed. Such systems are called hydrogen-bonded organic frameworks (HOFs). Herein we systematically describe H-bonding patterns (supramolecular synthons) and molecular structures (tectons) that have been used to achieve thermal and chemical durability, a large surface area, and functions, such as selective gas sorption and separation, which can provide design principles for constructing HOFs with permanent porosity.
机译:设计可用于构建多孔材料的有机成分使得能够制备定制的官能化材料。 由于发现自站立多孔分子晶体(PMC),过去十年来研究了多孔材料的研究。 特别地,已经开发了许多具有通过氢键(H键合)通过自组装形成的永久孔隙率的晶体系统。 这种系统称为氢键有机框架(HOF)。 在此,我们系统地描述了已经用于实现热和化学耐久性,大表面积和功能的H键合图案(超分子合成器)和分子结构(构造),例如选择性气体吸附和分离,可以提供设计原理 用于构建具有永久性孔隙度的HOF。

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