Chemoselectivity in the dehydrocoupling synthesis of higher molecular weight polysilanes

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Abstract

The Cp2ZrCl2/2 BuLi catalyzed co-polymerization of H2MeSiSiMeH2 and PhSiH3 was compared to the homo-polymerization of H2MeSiSiPhH2. In contrast to the copolymerization, which gave molecular weights comparable to homo-polymerization of phenylsilane, the reaction of 1-methyl-2-phenyldisilane yielded a partially cross-linked high molecular weight polymer with very broad molecular weight distribution. A higher reactivity of phenyl-substituted silicon atoms compared to methyl-substituted ones was detected. Stoichiometric reactions of some disilanes with the slow dehydropolymerization catalyst CpCp*Hf(Cl)Si(SiMe3)3 gave metal disilanyl intermediates with selectivities that reflect the observed polymerization behavior. © 2010 by the authors.

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Lunzer, F., & Marschner, C. (2010). Chemoselectivity in the dehydrocoupling synthesis of higher molecular weight polysilanes. Materials, 3(2), 1125–1137. https://doi.org/10.3390/ma3021125

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