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October 9, 2017Journal of the American Chemical Society590 citations

Silyl Ether as a Robust and Thermally Stable Dynamic Covalent Motif for Malleable Polymer Design

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YNYoshio NishimuraJCJaeyoon ChungHMHurik Muradyan

Key Points

  • To evaluate silyl ether linkages with neighboring amino groups as robust, thermally stable dynamic covalent motifs for designing malleable and reprocessable polymer networks.
  • Synthesized dynamic covalent polymer networks containing silyl ether linkages and neighboring amino moieties.
  • Characterized network malleability and determined topology freezing temperatures via temperature-dependent stress relaxation measurements.
  • Introducing a neighboring amino moiety accelerated the silyl ether exchange rate by nearly three orders of magnitude.
  • Polymer networks exhibited tunable dynamic malleability, complete reprocessability, and high thermal stability across tested temperature ranges.

Abstract

Here we introduce silyl ether linkage as a novel dynamic covalent motif for dynamic material design. Through introduction of a neighboring amino moiety, we show that the silyl ether exchange rate can be accelerated by almost three orders of magnitude. By incorporating such silyl ether linkages into covalently cross-linked polymer networks, we demonstrate dynamic covalent network polymers displaying both malleability and reprocessability. The malleability of the networks is studied by monitoring stress relaxation at varying temperature, and their topology freezing temperatures are determined. The tunable dynamic properties coupled with the high thermal stability and reprocessability of silyl ether-based networks open doors to many potential applications for this family of materials.

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Cite This Study

Nishimura et al. (2017) studied this question.

synapsesocial.com/papers/69d77fdeb1cb92dd1bb8b7cfhttps://doi.org/10.1021/jacs.7b08826
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