Issue 7, 2010

Influence of the alkyl linker in the structuring of bridged silsesquioxanes obtained by self-recognition properties

Abstract

A bridged silsesquioxane was obtained from a monosilylated precursor derivative of ureidopyrimidinone, which combines self-assembling properties and hydrophobic interaction of a long alkyl linker (10 carbons). The formation of the organic bridge was promoted through dimerisation via the 4 H-bonds of the ureidopyrimidinone functionality. The association of the organic bridge was brought by the hydrophobic interactions of the long alkylene chains between the organic bridges and the terminal hydrolysable trialkoxysilyl functionality. The self-assembling and structuring of the molecular precursor was transcribed to the resulting hybrid bridged silsesquioxanes after hydrolysis–condensation in aqueous acidic conditions as shown by a set of spectroscopic methods. The long hydrocarbon chain greatly influences the structuring and the morphology of the hybrid material.

Graphical abstract: Influence of the alkyl linker in the structuring of bridged silsesquioxanes obtained by self-recognition properties

Article information

Article type
Paper
Submitted
09 Dec 2009
Accepted
02 Feb 2010
First published
17 Mar 2010

New J. Chem., 2010,34, 1436-1440

Influence of the alkyl linker in the structuring of bridged silsesquioxanes obtained by self-recognition properties

G. Arrachart, A. Bendjerriou, C. Carcel, J. J. E. Moreau and M. Wong Chi Man, New J. Chem., 2010, 34, 1436 DOI: 10.1039/B9NJ00741E

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