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Mussel-Inspired Multiloop Polyethers for Antifouling Surfaces

Authors
Park S.Kim M.Park J.최우진Hong J.Lee D.W.BYEONG-SU KIM
Issue Date
Dec-2021
Publisher
American Chemical Society
Keywords
Multiloop Polyethers; Antifouling Surfaces; catechol moiety; loop dimensions
Citation
Biomacromolecules, v.22, no.12, pp 5173 - 5184
Pages
12
Journal Title
Biomacromolecules
Volume
22
Number
12
Start Page
5173
End Page
5184
URI
https://yscholarhub.yonsei.ac.kr/handle/2021.sw.yonsei/22950
DOI
10.1021/acs.biomac.1c01124
ISSN
1525-7797
1526-4602
Abstract
Despite the widespread use of polymers for antifouling coatings, the effect of the polymeric topology on the antifouling property has been largely underexplored. Unlike conventional brush polymers, a loop conformation often leads to strong steric stabilization of surfaces and antifouling and lubricating behavior owing to the large excluded volume and reduced chain ends. Herein, we present highly antifouling multiloop polyethers functionalized with a mussel-inspired catechol moiety with varying loop dimensions. Specifically, a series of polyethers with varying catechol contents were synthesized via anionic ring-opening polymerization by using triethylene glycol glycidyl ether (TEG) and catechol-acetonide glycidyl ether (CAG) to afford poly(TEG-co-CAG)n. The versatile adsorption and antifouling effects of multiloop polyethers were evaluated using atomic force microscopy and a quartz crystal microbalance with dissipation. Furthermore, the crucial role of the loop dimension in the antifouling properties was analyzed via a surface force apparatus and a cell attachment assay. This study provides a new platform for the development of versatile antifouling polymers with varying topologies.
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