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新型两性离子金属有机框架的设计、结构多样性及性质

Design, structural diversity and properties of novel zwitterionic metal-organic frameworks.

作者信息

Aulakh Darpandeep, Nicoletta Anthony P, Pyser Joshua B, Varghese Juby R, Wriedt Mario

机构信息

Department of Chemistry & Biomolecular Science, Clarkson University, 8 Clarkson Ave, Potsdam, NY 13699, USA.

出版信息

Dalton Trans. 2017 May 30;46(21):6853-6869. doi: 10.1039/c7dt00292k.

Abstract

Seven new zwitterionic metal-organic frameworks (ZW MOFs) of compositions {[Cd(L1)(OH)]·2HO} (1), {[Mn(L1)(OH)]·HO} (2), {[Cu(HL1)(OH)]·9HO} (3), {[Mn(L2)(OH)]·3HO} (4), [Co(L2)(OH)]·HO (5), [Ni(L2)(OH)] (6), and {[Cd(L2)(OH)]·4HO} (7), where HL1Br = 3-carboxy-1-(3,5-dicarboxybenzyl)pyridinium bromide and HL2Br = 4-carboxy-1-(3,5-dicarboxybenzyl)pyridinium bromide, have been synthesized under hydrothermal conditions. We demonstrate that the diversity of these crystal structures suggests that the tridentate and flexible nature of ZW ligands L1 and L2 make them excellent candidates for the synthesis of new ZW MOFs. A multi-charged anionic nature is a common feature of L1 and L2, and therefore, allows the rational design of ZW MOFs without the presence of additional counterions for charge compensation. All materials were structurally characterized by single-crystal X-ray diffraction and further characterized by elemental analyses, infrared spectroscopy (IR), powder X-ray diffraction (PXRD), thermogravimetric analyses (TGA), differential scanning calorimetry (DSC) and adsorption measurements. Most interestingly, permanent porosity could be observed for 1, originated from 4 Å channel pores and confirmed by methanol adsorption experiments, which yielded an uptake of 7.43 wt% at 25 °C; and respectively, anhydrates of 1, 2, 4 and 6 can be rehydrated upon exposure to ambient air, as evidenced by TGA and PXRD measurements. In addition, we report an in-depth CSD analysis of selected structural parameters, coordination modes and topologies exhibited by MOFs based on ZW ligands L1 and L2 along with the regio-isomeric analogue L3, where HL3Br = N-(4-carboxybenzyl)-(3,5-dicarboxyl)pyridinium bromide.

摘要

合成了七种新的两性离子金属有机框架(ZW MOF),其组成分别为{[Cd(L1)(OH)]·2H₂O}(1)、{[Mn(L1)(OH)]·H₂O}(2)、{[Cu(HL1)(OH)]·9H₂O}(3)、{[Mn(L2)(OH)]·3H₂O}(4)、[Co(L2)(OH)]·H₂O(5)、[Ni(L2)(OH)](6)和{[Cd(L2)(OH)]·4H₂O}(7),其中HL1Br = 3 - 羧基 - 1 - (3,5 - 二羧基苄基)吡啶溴化物,HL2Br = 4 - 羧基 - 1 - (3,5 - 二羧基苄基)吡啶溴化物,这些是在水热条件下合成的。我们证明,这些晶体结构的多样性表明ZW配体L1和L2的三齿和柔性性质使其成为合成新型ZW MOF的极佳候选物。多电荷阴离子性质是L1和L2的共同特征,因此,在不存在用于电荷补偿的额外抗衡离子的情况下,也能合理设计ZW MOF。所有材料都通过单晶X射线衍射进行了结构表征,并通过元素分析、红外光谱(IR)、粉末X射线衍射(PXRD)、热重分析(TGA)、差示扫描量热法(DSC)和吸附测量进行了进一步表征。最有趣的是,对于1可以观察到永久孔隙率,其源于4 Å的通道孔,并通过甲醇吸附实验得到证实,在25 °C时的吸附量为7.43 wt%;此外,通过TGA和PXRD测量证明,1、2、4和6的无水物在暴露于环境空气时可以重新水合。此外,我们报告了基于ZW配体L1和L2以及区域异构体类似物L3(其中HL3Br = N - (4 - 羧基苄基)-(3,5 - 二羧基)吡啶溴化物)的MOF所表现出的选定结构参数、配位模式和拓扑结构的深入CSD分析。

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