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通过预组织配体构象合理构建ssa型金属有机框架及其优异的气体吸附性能。

Rational construction of an ssa-type of MOF through pre-organizing the ligand's conformation and its exceptional gas adsorption properties.

作者信息

Wang Yao, He Minghui, Tian Zhi, Zhong Haoyan, Zhu Lisha, Zhang Yingying, Zhang Xiaoping, Chen De-Li, He Yabing

机构信息

Key Laboratory of the Ministry of Education for Advanced Catalysis Materials, College of Chemistry and Life Sciences, Zhejiang Normal University, Jinhua 321004, China.

出版信息

Dalton Trans. 2018 Feb 13;47(7):2444-2452. doi: 10.1039/c7dt04867j.

Abstract

Ssa-type MOFs constructed from dicopper paddlewheels and bent diisophthalate ligands exhibit a promising potential for gas adsorption which benefits from their rich open copper sites and polyhedron-based cages with suitable sizes. However, the rational construction of such types of MOFs is exceedingly challenging because the bent diisophthalate ligands employed are inclined to exhibit various conformations and thus are prone to form MOFs with varied topologies. In this work, by pre-organizing the ligand's conformation, we successfully targeted an ssa-type MOF ZJNU-57 from a bent diisophthalate ligand. More significantly, ZJNU-57 exhibits excellent hydrolytic stability and high CH and CO uptake capacities as well as impressive CH/CH and CO/CH adsorption selectivities, indicating its promising potential for CH/CH and CO/CH separation, which are relevant to acetylene production and natural gas purification. This work not only provides a rare water-stable MOF based on the Cu(COO) cluster for highly selective adsorption of CH and CO from CH, but also demonstrates that the ligand conformation-controlled assembly strategy may be an efficient approach toward the construction of MOF materials with definite topologies for specific applications.

摘要

由双铜桨轮和弯曲的二异苯二甲酸酯配体构建的Ssa型金属有机框架(MOF)在气体吸附方面展现出了巨大潜力,这得益于其丰富的开放铜位点以及尺寸合适的基于多面体的笼状结构。然而,合理构建此类MOF极具挑战性,因为所使用的弯曲二异苯二甲酸酯配体倾向于呈现各种构象,因此易于形成具有不同拓扑结构的MOF。在这项工作中,通过预组织配体的构象,我们成功地从一种弯曲的二异苯二甲酸酯配体中得到了一种Ssa型MOF ZJNU - 57。更重要的是,ZJNU - 57表现出优异的水解稳定性、高的CH和CO吸附容量以及令人印象深刻的CH/CH和CO/CH吸附选择性,这表明其在CH/CH和CO/CH分离方面具有巨大潜力,这与乙炔生产和天然气净化相关。这项工作不仅提供了一种罕见的基于Cu(COO)簇的水稳定MOF,用于从CH中高选择性吸附CH和CO,还证明了配体构象控制的组装策略可能是一种构建具有特定拓扑结构以用于特定应用的MOF材料的有效方法。

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