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Transparent silphenylene elastomers from highly...
Journal article

Transparent silphenylene elastomers from highly branched monomers

Abstract

Catalyst free crosslinking of highly branched silphenylene monomers, made using the Piers–Rubinsztajn reaction, leads to high refractive index, soft elastomers.

Thermally stable silicone elastomers based on silphenylenes are normally white solids at room temperature due to physical interactions between silphenylene moieties that lead to separated domains. We demonstrate that the Piers–Rubinsztajn reaction can be used to prepare highly branched tri- and tetrasilphenylene monomers from commercial alkoxysilanes and p -HSiMe 2 C 6 H 4 SiMe 2 H in the presence of B(C 6 F 5 ) 3 . The H-terminated monomers could be cured to give soft elastomers simply by heating in air for up to 6 hours in the absence of a catalyst; curing occurs primarily via oxidative coupling of terminal SiH groups. The resulting elastomers were transparent (>95%) at room temperature up to 250 °C, and showed very good thermal stability (degradation begins >400 °C).

Authors

Liang S; Wong MY; Schneider A; Liao M; Kräuter G; Tchoul MN; Chen Y; Brook MA

Journal

Polymer Chemistry, Vol. 12, No. 2, pp. 209–215

Publisher

Royal Society of Chemistry (RSC)

Publication Date

January 20, 2021

DOI

10.1039/d0py01148g

ISSN

1759-9954

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