One-pot synthesis for gradient copolymers via concurrent tandem living radical polymerization: mild and selective transesterification of methyl acrylate through Al(acac) 3 with common alcohols

A series of gradient copolymers were synthesized by the ruthenium-catalyzed living radical polymerization (LRP) of methyl acrylate (MA) and aliphatic alcohols using aluminum acetylacetonate Al(acac) . In this polymerization system, Al(acac) was successfully used not only as an additive for the Ru-ca...

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Veröffentlicht in:RSC advances 2021-07, Vol.11 (42), p.26049-26055
Hauptverfasser: Huynh, Tam Thi-Thanh, Kim, Si Eun, Kim, Soon Cheon, Kim, Jin Chul, Park, Young Il, Jeong, Ji-Eun, Yeo, Hyeonuk, Lee, Sang-Ho
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Sprache:eng
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Zusammenfassung:A series of gradient copolymers were synthesized by the ruthenium-catalyzed living radical polymerization (LRP) of methyl acrylate (MA) and aliphatic alcohols using aluminum acetylacetonate Al(acac) . In this polymerization system, Al(acac) was successfully used not only as an additive for the Ru-catalyzed LRP but also as a catalyst for the selective transesterification of an unsaturated ester monomer in mild conditions in a process known as concurrent tandem living radical polymerization. The resulting MA-based gradient copolymers showed well-controlled molecular weight and distribution in a one-pot reaction and exhibited a well-controlled gradient sequence in their polymer chain. Control of transesterification and the metal-catalyzed living radical polymerization (Mt-LRP) rate varied depending on the concentration of the Al(acac) and the structure of varying alcohols, which were confirmed by H NMR, SEC, and DSC analysis. In particular, this research opens a new synthetic methodology for preparing acrylate-based gradient copolymers concurrent tandem LRP not limited to the synthesis of methyl methacrylate types of gradient copolymers.
ISSN:2046-2069
2046-2069
DOI:10.1039/d1ra04595d