Issue 12, 2016

Transport properties of hierarchical micro–mesoporous materials

Abstract

Adding mesopore networks in microporous materials using the principles of hierarchical structure design is recognized as a promising route for eliminating their transport limitations and, therefore, for improving their value in technological applications. Depending on the routes of physico-chemical procedures or post-synthesis treatments used, very different geometries of the intentionally-added transport mesopores can be obtained. Understanding the structure–dynamics relationships in these complex materials with multiple porosities under different thermodynamical conditions remains a challenging task. In this review, we summarize the results obtained so far on experimental and theoretical studies of diffusion in micro-mesoporous materials. By considering four common classes of bi-porous materials, which are differing by the inter-connectivities of their sup-spaces as one of the most important parameter determining the transport rates, we discuss their generic transport properties and correlate the results delivered by the equilibrium and non-equilibrium techniques of diffusion measurements.

Graphical abstract: Transport properties of hierarchical micro–mesoporous materials

Supplementary files

Article information

Article type
Review Article
Submitted
17 Sep 2015
First published
13 Jan 2016
This article is Open Access
Creative Commons BY license

Chem. Soc. Rev., 2016,45, 3439-3467

Author version available

Transport properties of hierarchical micro–mesoporous materials

D. Schneider, D. Mehlhorn, P. Zeigermann, J. Kärger and R. Valiullin, Chem. Soc. Rev., 2016, 45, 3439 DOI: 10.1039/C5CS00715A

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