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等结构氢键有机框架的构建:孔扩张的局限性与可能性

Construction of isostructural hydrogen-bonded organic frameworks: limitations and possibilities of pore expansion.

作者信息

Suzuki Yuto, Gutiérrez Mario, Tanaka Senri, Gomez Eduardo, Tohnai Norimitsu, Yasuda Nobuhiro, Matubayasi Nobuyuki, Douhal Abderrazzak, Hisaki Ichiro

机构信息

Division of Chemistry, Graduate School of Engineering Science, Osaka University 1-3 Machikaneyama Toyonaka Osaka 560-8531 Japan

Departamento de Química Física, Facultad de Ciencias Ambientales y Bioquímica, INAMOL, Universidad de Castilla-La Mancha Avenida Carlos III, S/N 45071 Toledo Spain

出版信息

Chem Sci. 2021 Jun 23;12(28):9607-9618. doi: 10.1039/d1sc02690a. eCollection 2021 Jul 21.

Abstract

The library of isostructural porous frameworks enables a systematic survey to optimize the structure and functionality of porous materials. In contrary to metal-organic frameworks (MOFs) and covalent organic frameworks (COFs), a handful of isostructural frameworks have been reported for hydrogen-bonded organic frameworks (HOFs) due to the weakness of the bonds. Herein, we provide a rule-of-thumb to develop isostructural HOFs, where we demonstrate the construction of the third and fourth generation of isostructural HAT-based HOFs ( and ) by considering three important structural factors, that are (1) directional H-bonding, (2) shape-fitted docking of the HAT core, and (3) modulation of peripheral moieties. Their structural and photo-physical properties including HCl vapor detection are presented. Moreover, , , and other isostructural HOFs ( and ) were thoroughly compared from the viewpoints of structures and properties. Importantly, molecular dynamics (MD) simulation proves to be rationally capable of evaluating the stability of isostructural HOFs. These results can accelerate the development of various isostructural molecular porous materials.

摘要

同构多孔骨架库有助于进行系统研究,以优化多孔材料的结构和功能。与金属有机骨架(MOF)和共价有机骨架(COF)不同,由于氢键的弱点,关于氢键有机骨架(HOF)的同构骨架报道较少。在此,我们提供了一个开发同构HOF的经验法则,通过考虑三个重要的结构因素,即(1)定向氢键、(2)HAT核心的形状匹配对接和(3)外围部分的调制,展示了第三代和第四代基于HAT的同构HOF( 和 )的构建。介绍了它们的结构和光物理性质,包括HCl蒸汽检测。此外,从结构和性质的角度对 、 和其他同构HOF( 和 )进行了全面比较。重要的是,分子动力学(MD)模拟被证明能够合理地评估同构HOF的稳定性。这些结果可以加速各种同构分子多孔材料的开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b01/8293819/9b6cf657bccd/d1sc02690a-f1.jpg

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