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沸石A咪唑酯骨架结构

Zeolite A imidazolate frameworks.

作者信息

Hayashi Hideki, Côté Adrien P, Furukawa Hiroyasu, O'Keeffe Michael, Yaghi Omar M

机构信息

Department of Chemistry and Biochemistry, Center for Reticular Chemistry, University of California, Los Angeles, 607 Charles E. Young Drive East, Los Angeles, California 90095-1569, USA.

出版信息

Nat Mater. 2007 Jul;6(7):501-6. doi: 10.1038/nmat1927. Epub 2007 May 27.

Abstract

Faujasite (FAU) and zeolite A (LTA) are technologically important porous zeolites (aluminosilicates) because of their extensive use in petroleum cracking and water softening. Introducing organic units and transition metals into the backbone of these types of zeolite allows us to expand their pore structures, enhance their functionality and access new applications. The invention of metal-organic frameworks and zeolitic imidazolate frameworks (ZIFs) has provided materials based on simple zeolite structures where only one type of cage is present. However, so far, no metal-organic analogues based on FAU or LTA topologies exist owing to the difficulty imposed by the presence of two types of large cage (super- and beta-cages for FAU, alpha- and beta-cages for LTA). Here, we have identified a strategy to produce an LTA imidazolate framework in which both the link geometry and link-link interactions play a decisive structure-directing role. We describe the synthesis and crystal structures of three porous ZIFs that are expanded analogues of zeolite A; their cage walls are functionalized, and their metal ions can be changed without changing the underlying LTA topology. Hydrogen, methane, carbon dioxide and argon gas adsorption isotherms are reported and the selectivity of this material for carbon dioxide over methane is demonstrated.

摘要

八面沸石(FAU)和A型沸石(LTA)是技术上重要的多孔沸石(硅铝酸盐),因为它们在石油裂解和水软化方面有广泛应用。将有机单元和过渡金属引入这些类型沸石的骨架中,能够扩展其孔结构、增强其功能并开拓新的应用。金属有机骨架和沸石咪唑酯骨架(ZIFs)的发明提供了基于简单沸石结构的材料,其中仅存在一种类型的笼。然而,到目前为止,由于存在两种类型的大笼(FAU的超笼和β笼,LTA的α笼和β笼)带来的困难,不存在基于FAU或LTA拓扑结构的金属有机类似物。在此,我们确定了一种策略来制备一种LTA咪唑酯骨架,其中连接几何形状和连接-连接相互作用都起着决定性的结构导向作用。我们描述了三种多孔ZIFs的合成和晶体结构,它们是A型沸石的扩展类似物;它们的笼壁功能化,并且其金属离子可以在不改变基础LTA拓扑结构的情况下进行改变。报告了氢气、甲烷、二氧化碳和氩气的气体吸附等温线,并证明了该材料对二氧化碳相对于甲烷的选择性。

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