Thermal-induced phase transitions in self-assembled mesostructured films studied by small-angle X-ray scattering

Two examples of phase transition in self-assembled mesostructured hybrid thin films are reported. The materials have been synthesized using tetraethoxysilane as the silica source hydrolyzed with or without the addition of methyltriethoxysilane. The combined use of transmission electron microscopy, s...

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Veröffentlicht in:Journal of synchrotron radiation. - 1998. - 12(2005), Pt 6 vom: 22. Nov., Seite 734-8
1. Verfasser: Innocenzi, Plinio (VerfasserIn)
Weitere Verfasser: Malfatti, Luca, Kidchob, Tongjit, Falcaro, Paolo, Costacurta, Stefano, Guglielmi, Massimo, Mattei, Giovanni, Bello, Valentina, Amenitsch, Heinz
Format: Aufsatz
Sprache:English
Veröffentlicht: 2005
Zugriff auf das übergeordnete Werk:Journal of synchrotron radiation
Schlagworte:Journal Article
Beschreibung
Zusammenfassung:Two examples of phase transition in self-assembled mesostructured hybrid thin films are reported. The materials have been synthesized using tetraethoxysilane as the silica source hydrolyzed with or without the addition of methyltriethoxysilane. The combined use of transmission electron microscopy, small-angle X-ray scattering and computer simulation has been introduced to achieve a clear identification of the organized phases. A structural study of the self-assembled mesophases as a function of thermal treatment has allowed the overall phase transition to be followed. The initial symmetries of mesophases in as-deposited films have been linked to those observed in samples after thermal treatment. The monodimensional shrinkage of silica films during calcination has induced a phase transition from face-centered orthorhombic to body-centered cubic. In hybrid films, instead, the phase transition has not involved a change in the unit cell but a contraction of the cell parameter normal to the substrate
Beschreibung:Date Completed 17.01.2006
Date Revised 21.10.2005
published: Print-Electronic
Citation Status PubMed-not-MEDLINE
ISSN:0909-0495