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Published on: June 8, 2016
Hydrophobic NIR Photocatalysts for High-Throughput RAFT Aqueous Solution Polymerization: Achieving Ultrahigh
Ruoyu Li1, Steven P Armes2, Zesheng An1,3
1State Key Laboratory of Supramolecular Structure and Materials, College of Chemistry, Jilin University, Changchun, China.
Abstract:
Near-infrared (NIR) photocontrolled radical polymerization offers the opportunity to combine NIR's deep-tissue penetration and biocompatibility with the precision and versatility afforded by controlled polymerization. However, its development is hindered by the scarcity of water-soluble NIR photocatalysts. Moreover, examples of systems achieving high molecular weights remain limited. To overcome these limitations, we have prepared colloidal NIR photocatalysts to conduct efficient reversible addition-fragmentation chain transfer (RAFT) polymerization in aqueous media. Combined with glucose oxidase for in situ degassing and H2O2 generation, such NIR dye particles photosensitize H2O2 to produce a controlled flux of hydroxyl radicals. This novel enzyme-NIR strategy enables high-throughput RAFT aqueous solution polymerization of various vinyl monomers with excellent control. Notably, ultrahigh molecular weight (Mn > 1,000 kg mol-1) homopolymers can be obtained for polymerizations conducted through an opaque biological barrier at ultralow photocatalyst loadings (4 ppm). Thus, such enzyme-NIR formulations enable precision polymer syntheses even in physiologically relevant environments.

