Harnessing autocatalytic reactions in polymerization and depolymerization

Autocatalysis and its relevance to various polymeric systems are discussed by taking inspiration from biology. A number of research directions related to synthesis, characterization, and multi-scale modeling are discussed in order to harness autocatalytic reactions in a useful manner for different a...

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Veröffentlicht in:MRS communications 2021-08, Vol.11 (4), p.377-390
Hauptverfasser: Kumar, Rajeev, Liu, Zening, Lokitz, Brad, Chen, Jihua, Carrillo, Jan-Michael, Jakowski, Jacek, Collier, C. Patrick, Retterer, Scott, Advincula, Rigoberto
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Sprache:eng
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Zusammenfassung:Autocatalysis and its relevance to various polymeric systems are discussed by taking inspiration from biology. A number of research directions related to synthesis, characterization, and multi-scale modeling are discussed in order to harness autocatalytic reactions in a useful manner for different applications ranging from chemical upcycling of polymers (depolymerization and reconstruction after depolymerization), self-generating micelles and vesicles, and polymer membranes. Overall, a concerted effort involving in situ experiments, multi-scale modeling, and machine learning algorithms is proposed to understand the mechanisms of physical and chemical autocatalysis. It is argued that a control of the autocatalytic behavior in polymeric systems can revolutionize areas such as kinetic control of the self-assembly of polymeric materials, synthesis of self-healing and self-immolative polymers, as next generation of materials for a sustainable circular economy. Graphic Abstract
ISSN:2159-6859
2159-6867
DOI:10.1557/s43579-021-00061-9