Using temperature to modify the reaction conditions and outcomes of polymers formed using transfer-dominated branching radical telomerisation (TBRT)

Transfer-dominated Branching Radical Telomerisation (TBRT) enables the production of branched polymers with step-growth backbones using radical telomerisation chemistry. By conducting identical TBRTs over a broad temperature range, the role of temperature in telomer formation and branching has been...

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Veröffentlicht in:RSC advances 2022-10, Vol.12 (48), p.31424-31431
Hauptverfasser: Flynn, Sean, Penrhyn-Lowe, Oliver B, Mckeating, Samuel, Wright, Stephen, Lomas, Sarah, Cassin, Savannah R, Chambon, Pierre, Rannard, Steve P
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Sprache:eng
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Zusammenfassung:Transfer-dominated Branching Radical Telomerisation (TBRT) enables the production of branched polymers with step-growth backbones using radical telomerisation chemistry. By conducting identical TBRTs over a broad temperature range, the role of temperature in telomer formation and branching has been evaluated. Elevated temperature limits telomer length, thereby allowing a >10% reduction in the amount of telogen required to produce near identical high molecular weight branched polymers. Branched polymer synthesis by TBRT benefits from increased reaction temperatures as higher chain transfer rates lead to more efficient use of telogen, leading to reduced telogen concentrations being used to create high molecular weight polymers.
ISSN:2046-2069
2046-2069
DOI:10.1039/d2ra06578a