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具有选择性吸附性能的金属有机框架材料的苯模板水热合成法。

Benzene-templated hydrothermal synthesis of metal-organic frameworks with selective sorption properties.

作者信息

Choi Eun-Young, Park Kyungsoo, Yang Cheol-Min, Kim Hyejin, Son Jung-Ho, Lee Soon W, Lee Young Hee, Min Dongwon, Kwon Young-Uk

机构信息

Department of Chemistry and BK-21 School of Molecular Sciences, Sungkyunkwan University, Suwon, 440-746, Korea.

出版信息

Chemistry. 2004 Oct 25;10(21):5535-40. doi: 10.1002/chem.200400178.

Abstract

In this paper, we report two metal-organic frameworks [Co3(ndc)3(bipyen)(1.5)]H2O (1) and [Co2(ndc)2bipyen)]C6H6.H2O (2) (bipyen=trans-1,2-bis(4-pyridyl)ethylene, H2ndc=2,6-naphthalenedicarboxylic acid). These compounds were both synthesized from identical hydrothermal reaction conditions except that benzene was added to the reaction for 2. Crystal structures show that the two compounds have triply interpenetrated three-dimensional frameworks and these frameworks have the same primary structure of a two-dimensional network of interconnected [Co2(O2CR)(4/2)] (R=naphthalene group) paddle-wheels and bridging bipyen ligands. Both compounds have guest water molecules and, in addition, 2 has guest benzene molecules. Structural transformations of the host accompanied guest removal, which can be monitored by powder X-ray diffraction. N2 adsorption data of 2 show that there are two different types of pores corresponding to the benzene and water pores. Upon exposure to vapors of several organic molecules, the heat-treated sample of 2 adsorbs benzene and cyclohexene, but does not adsorb toluene, (o-, m-, and p-)xylenes, cycloheptatriene, or cyclohexane.

摘要

在本文中,我们报道了两种金属有机框架化合物[Co3(ndc)3(bipyen)(1.5)]H2O (1) 和[Co2(ndc)2bipyen)]C6H6.H2O (2)(bipyen = 反式-1,2-双(4-吡啶基)乙烯,H2ndc = 2,6-萘二甲酸)。这两种化合物均由相同的水热反应条件合成,只是在合成2时向反应体系中加入了苯。晶体结构表明,这两种化合物具有三重互穿的三维框架结构,且这些框架具有相同的一级结构,即由相互连接的[Co2(O2CR)(4/2)](R = 萘基)桨轮和桥连bipyen配体构成的二维网络。两种化合物都含有客体水分子,此外,2还含有客体苯分子。主体结构的转变伴随着客体的去除,这可以通过粉末X射线衍射进行监测。2的N2吸附数据表明存在两种不同类型的孔,分别对应苯孔和水孔。在暴露于几种有机分子的蒸汽中时,2的热处理样品吸附苯和环己烯,但不吸附甲苯、(邻、间、对)二甲苯、环庚三烯或环己烷。

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