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五元环沸石的自发成柱

Spontaneous Pillaring of Pentasil Zeolites.

作者信息

Jain Rishabh, Chawla Aseem, Linares Noemi, García Martínez Javier, Rimer Jeffrey D

机构信息

Department of Chemical and Biomolecular Engineering, University of Houston, Houston, TX, 77204, USA.

Molecular Nanotechnology Lab, Department of Inorganic Chemistry, University of Alicante, Alicante, 03690, Spain.

出版信息

Adv Mater. 2021 Jun;33(22):e2100897. doi: 10.1002/adma.202100897. Epub 2021 Apr 27.

Abstract

Conventional methods to prepare hierarchical zeolites depend upon the use of organic structure-directing agents and often require multiple synthesis steps with limited product yield and Brønsted acid concentration. Here, it is shown that the use of MEL- or MFI-type zeolites as crystalline seeds induces the spontaneous formation of self-pillared pentasil zeolites, thus avoiding the use of any organic or branching template for the crystallization of these hierarchical structures. The mechanism of formation is evaluated by time-resolved electron microscopy to provide evidence for the heterogeneous nucleation and growth of sequentially branched nanosheets from amorphous precursors. The resulting hierarchical zeolites have large external surface area and high percentages of external acid sites, which markedly improves their catalytic performance in the Friedel-Crafts alkylation and methanol to hydrocarbons reactions. These findings highlight a facile, commercially viable synthesis method to reduce mass-transport limitations and improve the performance of zeolite catalysts.

摘要

制备分级沸石的传统方法依赖于使用有机结构导向剂,并且通常需要多个合成步骤,产物收率和布朗斯台德酸浓度有限。在此,研究表明使用MEL型或MFI型沸石作为晶种可诱导自支撑五硅沸石的自发形成,从而避免使用任何有机或支化模板来结晶这些分级结构。通过时间分辨电子显微镜评估形成机制,为从无定形前体依次分支的纳米片的异相成核和生长提供证据。所得的分级沸石具有大的外表面积和高比例的外酸位点,这显著提高了它们在傅-克烷基化反应和甲醇制烃反应中的催化性能。这些发现突出了一种简便、具有商业可行性的合成方法,可减少传质限制并提高沸石催化剂的性能。

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