材料科学
佩多:嘘
自愈水凝胶
生物相容性
导电聚合物
涂层
纳米技术
聚合物
丙烯酸酯
基质(水族馆)
表面改性
化学工程
高分子化学
复合材料
共聚物
工程类
地质学
冶金
海洋学
作者
Thierry Moser,Coralie Celma,Audrey Lebert,Eric Charrault,Robert Brooke,Peter Murphy,Gareth M. Browne,Richard A. Young,Timothy C. Higgs,Drew Evans
标识
DOI:10.1021/acsami.5b10831
摘要
Prompted by the rapidly developing field of wearable electronics, research into biocompatible substrates and coatings is intensifying. Acrylate-based hydrogel polymers have gained widespread use as biocompatible articles in applications such as contact and intraocular lenses. Surface treatments and/or coatings present one strategy to further enhance the performance of these hydrogels or even realize novel functionality. In this study, the conductive polymer poly(3,4-ethylenedioxythiophene) (PEDOT) is deposited from the vapor phase onto hydrated hydrogel substrates and blended with biocompatibilizing coconstituents incorporating polyethylene glycol (PEG) and polydimethyl siloxane (PDMS) moieties. Plasma pretreatment of the dehydrated hydrogel substrate modifies its surface topography and chemical composition to facilitate the attachment of conductive PEDOT-based surface layers. Manipulating the vapor phase polymerization process and constituent composition, the PEDOT-based coating is engineered to be both hydrophilic (i.e. to promote biocompatibility) and highly conductive. The fabrication of this conductively coated hydrogel has implications for the future of wearable electronic devices.
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