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首页> 外文期刊>Angewandte Chemie >Intergrowth Structure of Zeolite Crystals and Pore Orientation of Individual Subunits Revealed by Electron Backscatter Diffraction/Focused Ion Beam Experiments
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Intergrowth Structure of Zeolite Crystals and Pore Orientation of Individual Subunits Revealed by Electron Backscatter Diffraction/Focused Ion Beam Experiments

机译:电子反向散射衍射/聚焦离子束实验揭示的沸石晶体的共生结构和单个亚基的孔取向

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摘要

Zeolites are of tremendous scientific and technological importance, since a number of processes in modern chemical industry, such as crude oil refining, rely on their unique combination of catalytic activity and shape selectivity. Consequently, significant efforts have been directed at obtaining in-depth insight into the molecular processes taking place within zeolite pores during catalysis. A popular strategy is to investigate large zeolite crystallites, which are well-defined, ordered, and reproducible and can be If. used as model systems for diffusion and catalysis studies. Howeyer, this task is complicated by the complex structure of zeolite crystals comprising several intergrown building blocks. The interfaces of these subunits may constitute diffusion boundaries due to potential mismatch in the alignment of the microporous network, and this can render certain regions of the zeolite crystals inaccessible for reactant molecules and consequently affect the catalytic activity of the material.
机译:沸石具有巨大的科学技术意义,因为现代化学工业中的许多过程(例如原油精炼)都依赖于其催化活性和形状选择性的独特结合。因此,已经做出了巨大的努力来获得对在催化过程中沸石孔内发生的分子过程的深入了解。一种流行的策略是研究定义明确,有序且可重现且可能为If的大型沸石晶体。用作扩散和催化研究的模型系统。豪伊,这项任务由于包含数个互生结构单元的沸石晶体的复杂结构而变得复杂。这些亚基的界面由于微孔网络排列中的潜在失配而可能构成扩散边界,并且这可能使沸石晶体的某些区域不可用于反应物分子,因此影响了材料的催化活性。

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