
ISNI: 0000000404447053
Wikidata: Q49118
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</script>The proposed research advances the frontiers of polymer science and sustainability by addressing the longstanding challenge of controlling stereochemistry in radical polymerization. Key intellectual merits include: (1) Developing a catalytic system for stereospecific radical polymerization advances sustainable catalysis while enabling degradable polymer synthesis; (2) Designing catalysts for stereocontrol and degradability contributes to reducing plastic waste and environmental impact. Integrating experimental and computational studies will enhance mechanistic understanding, supporting the replacement of scarce and toxic elements with sustainable catalytic strategies; (3) The ability to control the inherent chirality and stereocomplexation of polymers is exploited to enable the formation of highly ordered and functional assemblies during polymerization.
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