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多孔金属有机四面体和异立方多面体的设计、合成、结构及气体(N2、Ar、CO2、CH4和H2)吸附性能

Design, synthesis, structure, and gas (N2, Ar, CO2, CH4, and H2) sorption properties of porous metal-organic tetrahedral and heterocuboidal polyhedra.

作者信息

Sudik Andrea C, Millward Andrew R, Ockwig Nathan W, Côté Adrien P, Kim Jaheon, Yaghi Omar M

机构信息

Materials Design and Discovery Group, Department of Chemistry, University of Michigan, Ann Arbor, MI 48109-1055, USA.

出版信息

J Am Chem Soc. 2005 May 18;127(19):7110-8. doi: 10.1021/ja042802q.

Abstract

A strategy based on assembling metal ions and organic carboxylate links has been applied for the design and synthesis of a new class of porous, truncated tetrahedral and heterocuboidal polyhedra, whose pore size and functionality can be systematically varied. The synthesis of this series of metal-organic polyhedra (MOPs) employs sulfate-capped oxygen-centered iron-carboxylate trimers, Fe3O(CO2)3(-)(SO4)3, as rigid nodes separated by linear (phenyl, biphenyl, terphenyl, and tetrahydropyrene) or trigonal (benzenetriphenyl) links to yield five highly crystalline polyhedra of general formula [NH2(CH3)2]8[Fe12O4(-)(SO4)12(link)x(py)12].G (x = 6 for linear or 4 for trigonal, py = pyridine, G = guests). In this series, the size of each polyhedron has been varied from 20.0 to 28.5 A (on edge), and the corresponding pore diameter from 7.3 to 13.3 A. Gas sorption isotherms were measured for three members of this series to reveal significant uptake of gases (N2, Ar, CO2, H2, CH4) and benzene and exhibit Type I sorption behavior that is indicative of permanent porosity. The apparent surface areas for these compounds range from 387 to 480 m(2)/g.

摘要

一种基于组装金属离子和有机羧酸盐连接的策略已被应用于设计和合成一类新型的多孔、截顶四面体和异立方八面体多面体,其孔径和功能可以系统地变化。这一系列金属有机多面体(MOPs)的合成采用硫酸根封端的以氧为中心的铁羧酸盐三聚体Fe3O(CO2)3(-)(SO4)3作为刚性节点,通过线性(苯基、联苯、三联苯和四氢芘)或三角形(苯三苯基)连接体隔开,以生成通式为[NH2(CH3)2]8[Fe12O4(-)(SO4)12(link)x(py)12].G(对于线性连接x = 6,对于三角形连接x = 4,py =吡啶,G =客体)的五个高度结晶的多面体。在该系列中,每个多面体的尺寸从20.0到28.5 Å(边长)不等,相应的孔径从7.3到13.3 Å。对该系列中的三个成员测量了气体吸附等温线,以揭示对气体(N2、Ar、CO2、H2、CH4)和苯的显著吸收,并表现出I型吸附行为,这表明具有永久孔隙率。这些化合物的表观表面积范围为387至480 m(2)/g。

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