Light-Mediated Synthesis and Reprocessing of Dynamic Bottlebrush Elastomers under Ambient Conditions

We introduce a novel grafting-through polymerization strategy to synthesize dynamic bottlebrush polymers and elastomers in one step using light to construct a disulfide-containing backbone. The key starting materialα-lipoic acid (LA)is commercially available, inexpensive, and biocompatible. When i...

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Veröffentlicht in:Journal of the American Chemical Society 2021-07, Vol.143 (26), p.9866-9871
Hauptverfasser: Choi, Chungryong, Self, Jeffrey L, Okayama, Yoichi, Levi, Adam E, Gerst, Matthias, Speros, Joshua C, Hawker, Craig J, Read de Alaniz, Javier, Bates, Christopher M
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Sprache:eng
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Zusammenfassung:We introduce a novel grafting-through polymerization strategy to synthesize dynamic bottlebrush polymers and elastomers in one step using light to construct a disulfide-containing backbone. The key starting materialα-lipoic acid (LA)is commercially available, inexpensive, and biocompatible. When installed on the chain end(s) of poly­(dimethylsiloxane) (PDMS), the cyclic disulfide unit derived from LA polymerizes under ultraviolet (UV) light in ambient conditions. Significantly, no additives such as initiator, solvent, or catalyst are required for efficient gelation. Formulations that include bis-LA-functionalized cross-linker yield bottlebrush elastomers with high gel fractions (83–98%) and tunable, supersoft shear moduli in the ∼20–200 kPa range. An added advantage of these materials is the dynamic disulfide bonds along each bottlebrush backbone, which allow for light-mediated self-healing and on-demand chemical degradation. These results highlight the potential of simple and scalable synthetic routes to generate unique bottlebrush polymers and elastomers based on PDMS.
ISSN:0002-7863
1520-5126
DOI:10.1021/jacs.1c03686