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Model Amphiphilic Block Copolymers with Tailored Molecular Weight and Composition in PDMS-Based Films to Limit Soft Biofouling

机译:模型两亲嵌段共聚物,具有定制的分子量和组合物在基于PDMS的薄膜中,以限制软生物污染

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摘要

A set of controlled surface composition films was produced utilizing amphiphilic block copolymers dispersed in a cross-linked poly(dimethylsiloxane) network. These block copolymers contained oligo(ethylene glycol) (PEGMA) and fluoroalkyl (AF6) side chains in selected ratios and molecular weights to control surface chemistry including antifouling and fouling-release performance. Such properties were assessed by carrying out assays using two algae, the green macroalga Ulva linza (favors attachment to polar surfaces) and the unicellular diatom Navicula incerta (favors attachment to nonpolar surfaces). All films performed well against U. linza and exhibited high removal of attached sporelings (young plants) under an applied shear stress, with the lower molecular weight block copolymers being the best performing in the set. The composition ratios from 50:50 to 60:40 of the AF6/PEGMA side groups were shown to be more effective, with several films exhibiting spontaneous removal of the sporelings. The cells of N. incerta were also removed from several coating compositions. All films were characterized by surface techniques including captive bubble contact angle, atomic force microscopy, and near edge X-ray absorption fine structure spectroscopy to correlate surface chemistry and morphology with biological performance.
机译:利用分散在交联聚(二甲基硅氧烷)网络中的两亲嵌段共聚物制备一组受控表面组合物膜。这些嵌段共聚物含有寡核苷酸(乙二醇)(PEGMA)和氟代烷基(AF6)侧链,在选定的比例和分子量中控制表面化学,包括防污和污垢释放性能。通过使用两种藻类进行测定来评估这些性质,绿色宏观格子Ulva Linza(Freavors Tool表面)和单细胞硅藻纳米型IncElta(有利于与非极性表面附着)来评估。所有薄膜对U. Linza表现良好,并且在施加的剪切应力下表现出高分附着的孢子素(幼株),其中较低的分子量嵌段共聚物是该组中最佳表现。 AF6 / PEGMA侧组的50:50至60:40的组成比率更有效,几件膜表现出自发去除孢子。也从几种涂料组合物中除去N.Cherta的细胞。所有薄膜的特征在于表面技术,包括捕获气泡接触角,原子力显微镜和近边缘X射线吸收细结构光谱,以将表面化学和形态与生物学性能相关联。

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