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Ultrathin coatings from isocyanate-terminated star PEG prepolymers: Layer formation and characterization

机译:异氰酸酯封端星形PEG预聚物的超薄涂层:层形成和表征

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摘要

In this study we present the preparation of thin and ultrathin coatings from six-arm star-shaped isocyanate-terminated prepolymers on amino-functionalized silicon wafers. The backbone of the stars is a statistical copolymer of ethylene oxide and propylene oxide in the ratio 80:20 (Star PEG). Film preparation by spin coating from aqueous THF resulted in a variety of film morphologies that are determined by the water content of the solvent. Water is indispensable for activation of the isocyanate-terminated stars in solution and for proper cross-linking of the coatings on the substrate. This cross-linking results in a dense network of PEG chains on the substrate linked via urea groups with a mesh size of the network that corresponds to the arm length of the stars. Layer thickness variations between 3 and 500 nm revealed a strong dependence of the contact angle with water on the layer thickness which is explained by the chemical composition of the coatings. Due to the high functionality of the star-shaped prepolymers, free amino groups remain in the films that were detected by fluorescence microscopy after reaction with 4-chloro-7-nitrobenzofurazan (NBF). To test the system for the ability to prevent unspecific interaction with proteins, adsorption of fluorescence-labeled avidin was examined with fluorescence microscopy. For layer thicknesses between 3 and 50 nm, no protein adsorption could be detected.
机译:在这项研究中,我们介绍了在氨基官能化硅晶圆上用六臂星形异氰酸酯封端预聚物制备薄涂层和超薄涂层的方法。恒星的骨架是环氧乙烷和环氧丙烷的统计共聚物,比例为80:20(恒星PEG)。通过从四氢乙铂水溶液旋涂制膜,产生了由溶剂的含水量决定的各种薄膜形态。水对于溶液中异氰酸酯封端的星的活化和基材上涂层的适当交联是必不可少的。这种交联导致基底上形成密集的PEG链网络,通过尿素基团连接,其网状尺寸对应于恒星的臂长。3 和 500 nm 之间的层厚变化表明,与水的接触角对层厚有很强的依赖性,这可以通过涂层的化学成分来解释。由于星形预聚物的高官能团,在与4-氯-7-硝基苯并呋喃(NBF)反应后,通过荧光显微镜检测到的薄膜中保留了游离氨基。为了测试系统防止与蛋白质发生非特异性相互作用的能力,用荧光显微镜检查了荧光标记的亲和素的吸附。对于3至50 nm之间的层厚,无法检测到蛋白质吸附。

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