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Combined QCM-D/GE as a tool to characterize stimuli-responsive swelling of and protein adsorption on polymer brushes grafted onto 3D-nanostructures

机译:结合QCm-D / GE作为一种工具,用于表征接枝到3D纳米结构上的聚合物刷上的刺激响应性肿胀和蛋白质吸附

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摘要

A combined setup of quartz crystal microbalance and generalized ellipsometry can be used to comprehensively investigate complex functional coatings comprising stimuli-responsive polymer brushes and 3D nanostructures in a dynamic, noninvasive in situ measurement. While the quartz crystal microbalance detects the overall change in areal mass, for instance, during a swelling or adsorption process, the generalized ellipsometry data can be evaluated in terms of a layered model to distinguish between processes occurring within the intercolumnar space or on top of the anisotropic nanocolumns. Silicon films with anisotropic nanocolumnar morphology were prepared by the glancing angle deposition technique and further functionalized by grafting of poly-(acrylic acid) or poly-(N-isopropylacrylamide) chains. Investigations of the thermoresponsive swelling of the poly-(N-isopropylacrylamide) brush on the Si nanocolumns proved the successful preparation of a stimuli-responsive coating. Furthermore, the potential of these novel coatings in the field of biotechnology was explored by investigation of the adsorption of the model protein bovine serum albumin. Adsorption, retention, and desorption triggered by a change in the pH value is observed using poly-(acrylic acid) functionalized nanostructures, although generalized ellipsometry data revealed that this process occurs only on top of the nanostructures. Poly-(N-isopropylacrylamide) is found to render the nanostructures non-fouling properties.Includes supplemental materials.
机译:石英晶体微天平和广义椭圆仪的组合设置可用于在动态,无创原位测量中全面研究包含刺激响应性聚合物刷和3D纳米结构的复杂功能涂层。虽然石英晶体微量天平可以检测表面质量的整体变化,例如在溶胀或吸附过程中,但可以根据分层模型评估广义椭偏数据,以区分在柱间空间内或顶部空间内发生的过程。各向异性的纳米柱。通过掠角沉积技术制备了具有各向异性纳米柱形态的硅膜,并通过接枝聚(丙烯酸)或聚(N-异丙基丙烯酰胺)链将其进一步官能化。对聚(N-异丙基丙烯酰胺)刷在Si纳米柱上的热响应性溶胀的研究证明成功制备了刺激响应性涂层。此外,通过研究模型蛋白牛血清白蛋白的吸附,探索了这些新型涂层在生物技术领域的潜力。尽管使用聚(丙烯酸)官能化的纳米结构观察到了由pH值变化触发的吸附,保留和解吸,但广义椭圆偏振数据显示该过程仅发生在纳米结构的顶部。发现聚(N-异丙基丙烯酰胺)可赋予纳米结构无污垢特性,包括补充材料。

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