Literature DB >> 24461839

Formation of monodisperse mesoporous silica microparticles via spray-drying.

Kathryn Waldron1, Winston Duo Wu2, Zhangxiong Wu1, Wenjie Liu1, Cordelia Selomulya3, Dongyuan Zhao4, Xiao Dong Chen5.   

Abstract

In this work, a protocol to synthesize monodisperse mesoporous silica microparticles via a unique microfluidic jet spray-drying route is reported for the first time. The microparticles demonstrated highly ordered hexagonal mesostructures with surface areas ranging from ~900 up to 1500 m(2)/g and pore volumes from ~0.6 to 0.8 cm(3)/g. The particle size could be easily controlled from ~50 to 100 μm from the same diameter nozzle via changing the initial solute content, or changing the drying temperature. The ratio of the surfactant (CTAB) and silica (TEOS), and the amount of water in the precursor were found to affect the degree of ordering of mesopores by promoting either the self-assembly of the surfactant-silica micelles or the condensation of the silica as two competing processes in evaporation induced self-assembly. The drying rate and the curvature of particles also affected the self-assembly of the mesostructure. The particle mesostructure is not influenced by the inlet drying temperature in the range of 92-160 °C, with even a relatively low temperature of 92 °C producing highly ordered mesoporous microparticles. The spray-drying derived mesoporous silica microparticles, while of larger sizes and more rapidly synthesized, showed a comparable performance with the conventional mesoporous silica MCM-41 in controlled release of a dye, Rhodamine B, indicating that these spray dried microparticles could be used for the immobilisation and controlled release of small molecules.
Copyright © 2013 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Controlled release; Mesoporous silica; Microparticles; Spray drying

Mesh:

Substances:

Year:  2013        PMID: 24461839     DOI: 10.1016/j.jcis.2013.12.027

Source DB:  PubMed          Journal:  J Colloid Interface Sci        ISSN: 0021-9797            Impact factor:   8.128


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