Highly efficient organic photocatalysts discovered via a computer-aided-design strategy for visible-light-driven atom transfer radical polymerization

被引:0
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作者
Varun Kumar Singh
Changhoon Yu
Sachin Badgujar
Youngmu Kim
Yonghwan Kwon
Doyon Kim
Junhyeok Lee
Toheed Akhter
Gurunathan Thangavel
Lee Soon Park
Jiseok Lee
Paramjyothi C. Nandajan
Reinhold Wannemacher
Begoña Milián-Medina
Larry Lüer
Kwang S. Kim
Johannes Gierschner
Min Sang Kwon
机构
[1] Ulsan National Institute of Science and Technology,Department of Materials Science and Engineering
[2] Ulsan National Institute of Science and Technology,Department of Chemistry
[3] Ulsan National Institute of Science and Technology,Department Chemical Engineering
[4] IMDEA Nanociencia,Madrid Institute for Advanced Studies
[5] University of Valencia,Department for Physical Chemistry, Faculty of Chemistry
来源
Nature Catalysis | 2018年 / 1卷
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摘要
Organocatalysed photoredox-mediated atom transfer radical polymerization (O-ATRP) is a very promising polymerization method as it eliminates concerns associated with transition-metal contamination of polymer products. However, reducing the amount of catalyst and expanding the monomer scope remain major challenges in O-ATRP. Herein, we report a systematic computer-aided-design strategy to identify powerful visible-light photoredox catalysts for O-ATRP. One of our discovered organic photoredox catalysts controls the polymerization of methyl methacrylate at sub-ppm catalyst loadings (0.5 ppm—a very meaningful amount enabling the direct use of polymers without a catalyst removal process); that is, 100–1,000 times lower loadings than other organic photoredox catalysts reported so far. Another organic photoredox catalyst with supra-reducing power in an excited state and high redox stability facilitates the challenging polymerization of the non-acrylic monomer styrene, which is not successful using existing photoredox catalysts. This work provides access to diverse challenging organic/polymer syntheses and makes O-ATRP viable for many industrial and biomedical applications.
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页码:794 / 804
页数:10
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