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首页> 外文期刊>Angewandte Chemie >Bridging the Gap between Structurally Distinct 2D Lamellar Zeolitic Precursors through a 3D Germanosilicate Intermediate
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Bridging the Gap between Structurally Distinct 2D Lamellar Zeolitic Precursors through a 3D Germanosilicate Intermediate

机译:通过3D丙硅酸盐中间体桥接结构不同的2D层状沸石前体之间的间隙

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摘要

There is broad scientific interest in lamellar zeolitic materials for a large variety of technological applications. The traditional synthetic methods towards two-dimensional (2D) zeolitic precursors have made a great impact in the construction of families of related zeolites; however, the connection between structurally distinct 2D zeolitic precursors is much less investigated in comparison, thereby resulting in a synthetic obstacle that theoretically limits the types of zeolites that can be constructed from each layer. Herein, we report a Ge-recycling strategy for the topotactic conversion between different 2D zeolitic precursors through a three-dimensional (3D) germanosilicate. Specifically, the intermediate germanosilicate can be constructed within 150 min by taking advantage of its structural similarity with the parent lamellar precursor. This process enables the conversion of one 2D zeolite structure into another distinct structure, thus overcoming the synthetic obstacle between two families of zeolitic materials.
机译:对大量技术应用的层状沸石材料具有广泛的科学兴趣。传统的二维(2D)沸石前体的合成方法对相关沸石的族构建产生了很大的影响;然而,在结构上的结构上不同的2D沸石前体之间的连接在比较的比较中得不少得多,从而导致理论上限制可以从每层构造的沸石的类型的合成障碍物。在此,我们通过三维(3D)锗硅酸盐来报告用于不同2D沸石前体之间的外催化转化的GE回收策略。具体地,通过利用其与母体层状前体的结构相似度,可以在150分钟内构建中间丙硅酸盐。该方法使将一个2D沸石结构转化为另一个不同的结构,从而克服了两个沸石材料的两个家庭之间的合成障碍。

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