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The role of symmetry in building up zeolite frameworks from layered zeolite precursors having ferrierite and CAS layers

机译:对称性在具有镁碱沸石和CAS层的层状沸石前体中构建沸石骨架的作用

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摘要

Layered zeolite precursors represent an emerging class of materials that expand the zeolite field in a new direction and have already produced new intriguing discoveries. One is a new fundamental insight that a zeolite framework can assemble by two pathways, directly in 3-D and via a layered precursor. Also new types of materials such as pillared and delaminated zeolites have been synthesized. Starting with the discovery of MCM-22 precursor in 1990s, other framework structures have now been obtained by topotactic condensation, including classical zeolites such as sodalite and ferrierite. The recent structural diversity observed with FER and CAS layers, which were found to produce two frameworks each, i.e. FER/CDO and CAS/NSI, respectively, are herein rationalized as resulting from the absence of in-plane mirror symmetry. A systematic treatment is envisioned, such as consideration of translational and pseudo-translational interactions in condensation of elementary shapes into close-packed assemblies, providing a blueprint for a general approach to analyze new precursors in the future. Other already documented instances of structural diversity include the presence of both types of packing in one preparation (CAS and NSI) and incomplete pairing of silanols connecting FER layers in ESR-12.
机译:层状沸石前体代表了新兴的一类材料,它们向新的方向扩展了沸石领域,并且已经产生了新的有趣发现。一种是新的基本见解,即沸石骨架可以通过两种途径直接组装成3-D并通过层状前体组装。还合成了新型材料,例如柱状和分层沸石。从1990年代发现MCM-22前体开始,现在已经通过全位缩合获得了其他骨架结构,包括传统的沸石,例如方钠石和镁碱沸石。由于没有平面内镜面对称性,在FER层和CAS层上观察到的最近的结构多样性被合理化,它们分别被发现分别产生两个构架,即FER / CDO和CAS / NSI。设想了一种系统的处理方法,例如考虑将基本形状压缩成密排组装时的翻译和假翻译相互作用,为将来分析新前体的一般方法提供了一个蓝图。其他已经记录的结构多样性实例包括在一种制剂中同时存在两种填料(CAS和NSI)以及连接ESR-12中FER层的硅烷醇不完全配对。

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