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Synthesis and organization of zeolite-like materials with three-dimensional helical pores

机译:具有三维螺旋孔的类沸石材料的合成与组织

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The increasing demand for enantiomerically pure chemicals has stimulated extensive research into the preparation of heterogeneous chiral catalysts or separation media that combine both shape selectivity and enantioselectivity. Helical pores in inorganic materials might be able to perform such functions, but their occurrence is rare. Attempts have been reported to synthesize a specific enantiomorph of the chiral zeolite beta, and chiral metal complexes have been used to assemble inorganic precursors into chiral frameworks. Materials with a fully three-dimensional array of helical structural units are particularly rare, because helical structures (such as quartz) are commonly generated by a uni-dimensional symmetry element acting on an achiral structural subunit. Here we report on a family of zeolite-type materials (which we call UCSB-7) that possess two independent sets of three-dimensional crosslinked helical pores, separated by a gyroid periodic minimal surface. We have synthesized the UCSB-7 framework for various compositions (zinc and beryllium arsenates, gallium germanate) using either inorganic cations or amines as structure-directing agents. The helical-ribbon motif that we identify might be exploited more widely for developing useful chiral solid-state structures.
机译:对对映体纯净化学品的需求不断增长,激发了对制备兼具形状选择性和对映选择性的非均相手性催化剂或分离介质的广泛研究。无机材料中的螺旋孔可能能够执行此类功能,但很少出现。已报道尝试合成手性沸石β的特定对映体,并且手性金属络合物已用于将无机前体组装成手性骨架。具有螺旋结构单元的全三维阵列的材料特别少见,因为螺旋结构(例如石英)通常由作用于非手性结构子单元上的一维对称元素生成。在这里,我们报告了一种沸石类型的材料(我们称为UCSB-7),该材料具有两套独立的三维交联的螺旋孔,由螺旋状周期性最小表面隔开。我们已经使用无机阳离子或胺类作为结构导向剂,合成了用于各种组成(锌和铍铍酸钡,锗酸镓)的UCSB-7骨架。我们确定的螺旋色带基序可能会更广泛地用于开发有用的手性固态结构。

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