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Dynamic constitutional hybrid materials-toward adaptive self-organized devices

Published online by Cambridge University Press:  31 January 2011

Mihail Barboiu
Affiliation:
mihai.barboiu@iemm.univ-montp2.fr, Institut Europeen des Membranes, Montpellier, France
Adinela Cazacu
Affiliation:
simona.mihai@iemm.univ-montp2.fr, Institut Europeen des Membranes, Montpellier, France
Simona Mihai
Affiliation:
cazacu@iemm.univ-montp2.fr, Institut Europeen des Membranes, Montpellier, France
Yves-Marie Legrand
Affiliation:
legrand@iemm.univ-montp2.fr, Institut Europeen des Membranes, Montpellier, France
Arie van der Lee
Affiliation:
arie.van-der-lee@iemm.univ-montp2.fr, Institut Europeen des Membranes, Montpellier, France
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Abstract

Dynamic constitutional hybrid materials in which the functional self-organized macrocycles are reversibly connected with the inorganic silica mesopores through hydrophobic non-covalent interactions. Supramolecular columnar self-organized architectures confined within scaffolding hydrophobic silica mesopores can be structurally determined by using X-ray diffraction techniques.

Type
Research Article
Copyright
Copyright © Materials Research Society 2009

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