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Organic photocatalyst for ppm-level visible-light-driven reversible addition-fragmentation chain-Transfer (raft) polymerization with excellent oxygen tolerance

Cited 55 time in Web of Science Cited 56 time in Scopus
Authors

Song, Yuna; Kim, Youngmu; Noh, Yeonjin; Singh, Varun Kumar; Kumar Behera, Santosh; Abudulimu, Abasi; Chung, Kyeongwoon; Wannemacher, R.; Gierschner, Johannes; Luer, Larry; Kwon, Min Sang

Issue Date
2019-08
Publisher
American Chemical Society
Citation
Macromolecules, Vol.52 No.15, pp.5538-5545
Abstract
A highly efficient organic photocatalyst (OPC) for photoinduced electron/energy-Transfer reversible addition-fragmentation chain-Transfer (PET-RAFT) polymerization was identified through a systematic catalyst design and discovery. The devised OPC offers excellent control over PET-RAFT polymerizations of methyl methacrylate at very low catalyst loadings (5 ppm), that is, ca. 5-50 times lower loadings than other OPCs reported so far. Moreover, excellent oxygen tolerance was achieved using the discovered OPC combined with trithiocarbonate-based chain-Transfer agent (CTA) under low-energy light irradiation conditions. In depth experimental and computational investigations revealed that (1) strong visible-light absorption and efficient generation of long-lived triplet states of the OPC due to its unique molecular structure and (2) the oxidation stability and no rate retardation of trithiocarbonate-based CTA are the key to the outstanding oxygen tolerance and ppm-level catalyst loadings. Our approach is thus believed to address a variety of challenging tasks related to polymer synthesis and living additive manufacturing. © 2019 American Chemical Society.
ISSN
0024-9297
URI
https://hdl.handle.net/10371/184019
DOI
https://doi.org/10.1021/acs.macromol.9b00940
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