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理性构建 3D 柱状金属有机骨架:合成、结构和氢气吸附性能。

Rational construction of 3D pillared metal-organic frameworks: synthesis, structures, and hydrogen adsorption properties.

机构信息

Department of Chemistry, and Tianjin Key Lab on Metal and Molecule-Based Material Chemistry, Nankai University, Tianjin 300071, China.

出版信息

Inorg Chem. 2011 Aug 15;50(16):7555-62. doi: 10.1021/ic2004485. Epub 2011 Jul 21.

DOI:10.1021/ic2004485
PMID:21776953
Abstract

In our efforts toward rational design and systematic synthesis of 'pillar-layer' structure MOFs, three porous MOFs have been constructed based on [Zn(4)(bpta)(2)(H(2)O)(2)] (H(4)bpta = 1,1'-biphenyl-2,2',6,6'-tetracarboxylic acid) layers and three different bipyridine pillar ligands. The resulted MOFs show similar structures but different pore volume and window size depending on the length of pillar ligands which resulted in distinct gas adsorption properties. In the three MOFs, [Zn(4)(bpta)(2)(4,4'-bipy)(2)(H(2)O)(2)]·(DMF)(3)·H(2)O (1) (DMF = N,N'-dimethylformamide and 4,4'-bipy = 4,4'-bipyridine) reveals selective adsorption of H(2) over N(2) and O(2) as the result of narrow pore size. [Zn(4)(bpta)(2)(azpy)(2)(H(2)O)(2)]·(DMF)(4)·(H(2)O)(3) (2) and [Zn(4)(bpta)(2)(dipytz)(2)(H(2)O)(2)]·(DMF)(4)·H(2)O (3) (azpy =4,4'-azopyridine, dipytz = di-3,6-(4-pyridyl)-1,2,4,5-tetrazine) reveal pore structure change upon different activation conditions. In addition, the samples activated under different conditions show distinct adsorption behaviors of N(2) and O(2) gases. Furthermore, hydrogen adsorption properties of activated 1-3 were studied. The results indicated that the activation process could affect the hydrogen enthalpy of adsorption.

摘要

在我们努力对“柱层”结构 MOFs 进行合理设计和系统合成的过程中,基于[Zn(4)(bpta)(2)(H(2)O)(2)](H(4)bpta = 1,1'-联苯-2,2',6,6'-四羧酸)层和三种不同的联吡啶柱配体构建了三个多孔 MOFs。所得到的 MOFs 具有相似的结构,但由于柱配体的长度不同,孔体积和窗口尺寸不同,导致气体吸附性能也不同。在这三个 MOFs 中,[Zn(4)(bpta)(2)(4,4'-bipy)(2)(H(2)O)(2)]·(DMF)(3)·H(2)O(1)(DMF = N,N'-二甲基甲酰胺和 4,4'-bipy = 4,4'-联吡啶)由于孔径狭窄,表现出对 H(2)的选择性吸附,超过了 N(2)和 O(2)。[Zn(4)(bpta)(2)(azpy)(2)(H(2)O)(2)]·(DMF)(4)·(H(2)O)(3)(2)和[Zn(4)(bpta)(2)(dipytz)(2)(H(2)O)(2)]·(DMF)(4)·H(2)O(3)(azpy = 4,4'-联吡啶,dipytz = 二-3,6-(4-吡啶基)-1,2,4,5-四嗪)在不同的活化条件下显示出孔结构的变化。此外,在不同条件下活化的样品对 N(2)和 O(2)气体显示出不同的吸附行为。此外,还研究了活化后 1-3 的氢气吸附性能。结果表明,活化过程会影响氢气的吸附焓。

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