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Recent advances in the synthesis of hierarchically nanoporous zeolites

机译:纳米级多孔沸石的合成新进展

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摘要

Hierarchically nanoporous zeolites possessing mesopores as well as the inherent micropores of zeolite structures are garnering attention as a solution to the diffusion limitation problem of solely microporous classical zeolites. The hierarchical structure enables zeolites to have maximum structural functions in a limited space and volume owing to the high diffusion efficiency. Hierarchical zeolites are in high demand for the development of advanced materials for applications in adsorption, separation and catalysis. Herein, recent advances in synthesis routes to hierarchically nanoporous zeolites are reviewed with their catalytic contributions. Particular emphasis is given to the recently developed synthesis method which uses surfactants that are functionalized with a zeolite-structure-directing group. This type of surfactants can direct porous structures in micro- and meso-length scales simultaneously.
机译:具有中孔以及沸石结构固有的微孔的分级纳米多孔沸石作为解决仅微孔经典沸石的扩散限制问题的解决方案而受到关注。由于高的扩散效率,分级结构使得沸石能够在有限的空间和体积中具有最大的结构功能。分层沸石对用于吸附,分离和催化的先进材料的开发有很高的要求。本文中,以其催化作用综述了分级纳米孔沸石的合成路线的最新进展。特别强调最近开发的合成方法,该方法使用经沸石结构导向基团官能化的表面活性剂。这种类型的表面活性剂可以同时在微米和中等长度尺度上引导多孔结构。

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