Issue 90, 2015

Non-aqueous template-assisted synthesis of mesoporous nanocrystalline silicon orthophosphate

Abstract

The first synthesis of mesoporous nanocrystalline silicon orthophosphate Si5P6O25 is presented. The synthetic procedure is based on the non-hydrolytic sol–gel reaction in the presence of Pluronic P123 template and subsequent calcination in air. The condensation of silicon acetate, Si(OAc)4, and tris(trimethylsilyl)phosphate, OP(OSiMe3)3 (TTP), in non-aqueous solvents driven by elimination of trimethylsilyl acetate provides a homogeneous network with a high content of Si–O–P bonds and SiO6 moieties. After burning out the template, mesoporous silicon orthophosphate was obtained with surface areas up to 128 m2 g−1 and pore sizes around 20 nm. The nanocrystalline Si5P6O25 phase forms relatively easily (500 °C, 4 h) in comparison with other synthetic routes. All samples were characterized by SEM, TEM, elemental analysis, TGA, nitrogen adsorption, SAXS, 1H, 13C, 29Si, and 31P solid-state NMR spectroscopy, and powder XRD. These xerogels showed superior catalytic activity and selectivity in methylstyrene dimerization.

Graphical abstract: Non-aqueous template-assisted synthesis of mesoporous nanocrystalline silicon orthophosphate

Supplementary files

Article information

Article type
Paper
Submitted
09 Jun 2015
Accepted
21 Aug 2015
First published
21 Aug 2015
This article is Open Access
Creative Commons BY license

RSC Adv., 2015,5, 73670-73676

Non-aqueous template-assisted synthesis of mesoporous nanocrystalline silicon orthophosphate

A. Styskalik, D. Skoda, Z. Moravec, P. Roupcova, C. E. Barnes and J. Pinkas, RSC Adv., 2015, 5, 73670 DOI: 10.1039/C5RA10982E

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