Organocatalyzed Atom Transfer Radical Polymerization (O‐ATRP) Using a Super‐Reducing Photoredox Catalyst
Abstract
Abstract The development of highly reducing photoredox catalysts (PCs) has brought forth new approaches to activating strong chemical bonds for small molecule and polymer synthesis. Organocatalyzed atom transfer radical polymerization (O‐ATRP) is a polymerization methodology that uses organic PCs for the synthesis of well‐defined polymers proceeding through a reversible‐deactivation mechanism. However, the reaction scope of O‐ATRP is confined to initiators and dormant polymer states that can be reduced by a PC. Herein, we report an O‐ATRP system using a super‐reducing PC to expand the capability of O‐ATRP to monomers (such as styrene (St) and vinylcarbazole (VCz)) and initiators (including aromatic halides and pseudo‐halides) that are challenging with most O‐ATRP systems. This system provides control over polymerization, air tolerance, and temporal regulation and enables the synthesis of polymer brushes via organocatalyzed grafting‐from reactions on linear chains. This strategy builds upon the transformative potential of super‐reducing PCs toward advancing the field of reversible‐deactivation radical polymerization.
Article Details
Authors (10)
Yucheng Zhao
Brandon S. Portela
Department of Chemistry Colorado State University Fort Collins CO 80523 USA
Alexander R. Green
Department of Chemistry Colorado State University Fort Collins CO 80523 USA
Anna M. Wolff
Department of Chemistry Colorado State University Fort Collins CO 80523 USA
Xin Liu
Katherine O. Puffer
Department of Chemistry Colorado State University Fort Collins CO 80523 USA
Arindam Sau
Niels H. Damrauer
Robert S. Paton
Garret M. Miyake
Department of Chemistry Colorado State University Center Ave Fort Collins Colorado 80523 USA