Hybrid copolymer latexes cross-linked with methacryloxy propyl trimethoxy silane. Film formation and mechanical properties |
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Authors: | Solweig Vitry, Audrey Mezzino, Catherine Gauthier, Jean-Yves Cavaill , Fr d ric Lefebvre, lodie Bourgeat-Lami |
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Affiliation: | a LCPP – UMR 140 CPE/CNRS, Bât. 308F, 43, bd du 11-Novembre-1918, BP 2077, 69616, Villeurbanne cedex, France;b GEMPPM, UMR 5510 INSA/CNRS, 69621, Villeurbanne cedex, France;c LCOMS, UMR 9986 CPE/CNRS, Bât. 308F, 43, bd du 11-Novembre-1918, BP 2077, 69616, Villeurbanne cedex, France |
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Abstract: | We describe in this work the copolymerization reaction of 3-trimethoxysilyl propyl methacrylate (MPS) with styrene (Styr.) and n-butyl acrylate (BuA) monomers through emulsion polymerization. The so-produced hybrid copolymer (P(BuA-co-MPS)) and terpolymer (P(Styr-co-BuA-co-MPS)) latexes were cast into films that displayed a good optical transparency. The copolymers microstructure in the films was characterized by FTIR, 13C and 29Si solid state NMR spectroscopies, and was found to be highly dependent on parameters such as the monomer feed composition, the suspension pH and the silane addition profile. The films obtained from the hybrid latexes showed improved dynamic mechanical properties indicating that a reinforcing organo-mineral network had formed in the composite materials. The dynamic modulus of the hybrids increased with increasing silane contents while, concurrently, the tan δ peak shifted to higher temperatures, broadened and decreased in intensity. To cite this article: S. Vitry et al., C. R. Chimie 6 (2003). |
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Keywords: | organic inorganic hybrid latexes sol– gel process emulsion polymerization film properties dynamic mechanical measurementslatex hybride polymé risation en é mulsion ré ticulation procé dé sol– gel spectromé trie mé canique dynamique |
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