Preparation of a polymeric precursor to silicon carbide via ring-opening polymerization: synthesis of poly [(methylchlorosilylene) methylene] and poly (silapropylene)

HJ Wu, LV Interrante - Chemistry of Materials, 1989 - ACS Publications
Chemistry of Materials, 1989ACS Publications
A high molecular weight linear polycarbosilane, poly [(methylchlorosilylene) methylene],[-
(CHglSiClCl·^-],,, has been prepared by ring-opening polymerization of 1, 3-dichloro-1, 3-
dimethyl-1, 3-disilacyclobutane. Reduction of this polymer with LiAlH4 yields the
corresponding polysilapropylene,[-(CH3) SiHCH2-]„. The structures of these polymers and
their monomeric precursors havebeen investigated by IR and, 13C, and 29Si NMR
spectroscopy, mass spectra, and GPC. The results of these studies are consistent, in the …
A high molecular weight linear polycarbosilane, poly [(methylchlorosilylene) methylene],[-(CHglSiClCl·^-],,, has been prepared by ring-opening polymerization of 1, 3-dichloro-1, 3-dimethyl-1, 3-disilacyclobutane. Reduction of this polymer with LiAlH4 yields the corresponding polysilapropylene,[-(CH3) SiHCH2-]„. The structures of these polymers and their monomeric precursors havebeen investigated by IR and, 13C, and 29Si NMR spectroscopy, mass spectra, and GPC. The results of these studies are consistent, in the case of the polymers, with expectations for high molecular weight linear polymers with atactic con-figurations. The pyrolysis of the high molecular weight poly (silapropylene) was studied by TGA and was found to give a 66% ceramic yield after thermal processing at 400 C, suggesting that this polymer has potential for use as a precursor to SiC ceramics.
ACS Publications
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