Benzoladderene Mechanophores: Synthesis, Polymerization, and Mechanochemical Transformation

Jinghui Yang(Stanford University), Maggie Horst(Stanford University), Joseph A. H. Romaniuk(Stanford University), Zexin Jin(Stanford University), Lynette Cegelski(Stanford University), Yan Xia(Stanford University)
Journal of the American Chemical Society
April 10, 2019
Cited by 97

Abstract

We have previously reported a polymechanophore system, polyladderene, which underwent dramatic bond rearrangement in response to mechanical force to yield semiconducting polyacetylene. Herein, we report the scalable synthesis of benzoladderenes as new mechanophore monomers. Ring-opening metathesis polymerization of benzoladderenes yielded homopolymers and block copolymers with controlled molecular weights and low dispersity. The resulting nonconjugated poly(benzoladderene) was mechanochemically transformed into conjugated poly( o-phenylene-hexatrienylene) by sonication, with degrees of transformation up to 40-45%. These benzoladderenes and their resulting polymers are easier to synthesize than the polyladderene system and allow mechanochemical generation of conjugated polymers beyond polyacetylene.


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