Fabrication of a high thermal-stable methacrylate-silicate hybrid nanocomposite: hydrolytic versus non-hydrolytic sol-gel synthesis of methacryl-oligosiloxanes

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A high thermal-stable methacrylate-silicate hybrid nanocomposite (hybrimer) was fabricated based on UV-induced polymerization of a highly-condensed methacryl-oligosiloxane resin (Hy-MO). The Hy-MO resin was newly synthesized via an acid-catalyzed hydrolytic sol-gel reaction of 3-(methacryloxy) propyl trimethoxysilane (MPTS) and diphenyldimethoxysilane. The basic properties of Hy-MO were compared with a conventional resin prepared by a Ba(OH)(2)center dot H(2)O-catalyzed non-hydrolytic sol-gel reaction of MPTS and diphenylsilanediol (N-MO). It was found that Hy-MO have a higher siloxane condensation degree, larger molecular size and weight than the N-MO due to the highly mobile proton ions that effectively catalyze the overall sol-gel reaction. The resultant Hy-MO hybrimer showed a higher thermal stability than N-MO hybrimer.
Publisher
SPRINGER
Issue Date
2012-02
Language
English
Article Type
Article
Keywords

ORGANIC-INORGANIC MATERIALS; CUBIC SILSESQUIOXANES; DIRECT PHOTOFABRICATION; LED ENCAPSULATION; REFRACTIVE-INDEX; POLYSILOXANE; LITHOGRAPHY; TECHNOLOGY; COMPOSITES; MECHANISM

Citation

JOURNAL OF SOL-GEL SCIENCE AND TECHNOLOGY, v.61, no.2, pp.321 - 327

ISSN
0928-0707
DOI
10.1007/s10971-011-2630-5
URI
http://hdl.handle.net/10203/101351
Appears in Collection
MS-Journal Papers(저널논문)
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