Hierarchical zeolites: enhanced utilisation of microporous crystals in catalysis by advances in materials design

微型多孔材料 沸石 介孔材料 催化作用 纳米技术 材料科学 化学工程 渲染(计算机图形) 吸附 结晶度 多孔性 化学 计算机科学 有机化学 复合材料 计算机图形学(图像) 工程类
作者
Javier Pérez‐Ramírez,Claus H. Christensen,Kake Zhu,Christina Hviid Christensen,Johan C. Groen
出处
期刊:Chemical Society Reviews [The Royal Society of Chemistry]
卷期号:37 (11): 2530-2530 被引量:1644
标识
DOI:10.1039/b809030k
摘要

The introduction of synthetic zeolites has led to a paradigm shift in catalysis, separations, and adsorption processes, due to their unique properties such as crystallinity, high-surface area, acidity, ion-exchange capacity, and shape-selective character. However, the sole presence of micropores in these materials often imposes intracrystalline diffusion limitations, rendering low utilisation of the zeolite active volume in catalysed reactions. This critical review examines recent advances in the rapidly evolving area of zeolites with improved accessibility and molecular transport. Strategies to enhance catalyst effectiveness essentially comprise the synthesis of zeolites with wide pores and/or with short diffusion length. Available approaches are reviewed according to the principle, versatility, effectiveness, and degree of reality for practical implementation, establishing a firm link between the properties of the resulting materials and the catalytic function. We particularly dwell on the exciting field of hierarchical zeolites, which couple in a single material the catalytic power of micropores and the facilitated access and improved transport consequence of a complementary mesopore network. The carbon templating and desilication routes as examples of bottom-up and top-down methods, respectively, are reviewed in more detail to illustrate the benefits of hierarchical zeolites. Despite encircling the zeolite field, this review stimulates intuition into the design of related porous solids (116 references).
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