Issue 41, 2015

Bimodal mesoporous silica with bottleneck pores

Abstract

Bimodal mesoporous silica consisting of two sets of well-defined mesopores is synthesized by a partial pseudomorphic transformation of an ordered mesoporous starting material (SBA-15 type). The introduction of a second set of smaller mesopores (MCM-41 type) establishes a pore system with bottlenecks that restricts the access to the core of the bimodal mesoporous silica particles. The particle size and shape of the starting material are retained, but micropores present in the starting material disappear during the transformation, leading to a true bimodal mesoporous product. A varying degree of transformation allows the adjustment of the pore volume contribution of the two mesopore domains. Information on the accessibility of the mesopores is obtained by the adsorption of fluorescence-labeled poly(amidoamine) dendrimers and imaging by confocal laser scanning microscopy. This information is correlated with nitrogen sorption data to provide insights regarding the spatial distribution of the two mesopore domains. The bimodal mesoporous materials are excellent model systems for the investigation of cavitation effects in nitrogen desorption isotherms.

Graphical abstract: Bimodal mesoporous silica with bottleneck pores

Article information

Article type
Paper
Submitted
10 Aug 2015
Accepted
14 Sep 2015
First published
24 Sep 2015

Dalton Trans., 2015,44, 17960-17967

Bimodal mesoporous silica with bottleneck pores

M. J. Reber and D. Brühwiler, Dalton Trans., 2015, 44, 17960 DOI: 10.1039/C5DT03082J

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