4.7 Article

Polymer brushes based on N-methacryloxysuccinimide as platform for versatile post-polymerization modification

Journal

PROGRESS IN ORGANIC COATINGS
Volume 178, Issue -, Pages -

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.porgcoat.2023.107447

Keywords

Polymer brush; Surface-initiated polymerization; Active ester monomer; Post-polymerization modification; Fluorescent polymer film

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In this study, a method for initiating atom-transfer radical polymerization of active esters and post-polymerization modification was presented. The obtained active ester brushes showed complete conversion under amidation conditions with various primary amines. The effectiveness of the amidation reaction was studied using various techniques, and the resulting polymer brushes containing fluorophores were analyzed using fluorescent microscopy.
In this contribution we present a method for the surface-initiated atom-transfer radical polymerization of active esters based on N-methacryloxysuccinimide and post-polymerization modification in mild conditions. The ob-tained active ester brushes show quantitative conversion under amidation conditions with various primary amines, including 1-amino-2-propanol, fluorine containing amines and amine-containing fluorophores. Amida-tion reaction with propargyl amine offers the possibility to introduce a second functionality in the homopolymer brushes. This widens the ability of polymer analogous reactions with functionalized compounds. The effec-tiveness of the amidation reaction was deeply studied utilizing spectroscopic ellipsometry, infrared reflection-absorption and X-ray photoelectron spectroscopies, contact angle goniometry and surface energy analysis. As validated by functionalized homopolymer brushes, hierarchical block copolymer brushes containing active ester monomer units also undergo quantitative conversion with primary amines. Furthermore, resulting polymer brushes containing fluorophores were studied by fluorescent microscopy to further investigate their film struc-ture and homogeneity.

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