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Versatile Method for Coating Surfaces with Functional and Responsive Polymer-Based Films

机译:多功能的功能性和响应性聚合物基薄膜表面涂层方法

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摘要

A versatile surface modification technique was developed to yield poly(N-isopropylacrylamide) (pNIPAm) microgel-based thin films on a variety of substrates, e.g., metals, nonmetals, and polymers. Because the chemistry, and hence functionality and responsivity, of the pNIPAm-based microgels is easily tuned, multifunctional and responsive thin films could be generated on many different surfaces without varying the coating conditions. In one case, we showed that fluorescent/light emitting thin films could be generated using crystal violet-modified microgels. Antibacterial films could be obtained using silver nanoparticle-modified pNIPAm-based microgels. Finally, we show that thin films fabricated via the methods here could be used as a component in optical sensors. Although we show only a few examples of the utility of this approach, we feel that the apparent universality of the technique can be extended to countless other applications.
机译:开发了一种通用的表面改性技术,以在各种基材(例如金属,非金属和聚合物)上生产基于聚(N-异丙基丙烯酰胺)(pNIPAm)微凝胶的薄膜。由于基于pNIPAm的微凝胶的化学性质以及功能性和响应性很容易调整,因此可以在不改变涂覆条件的情况下,在许多不同的表面上生成多功能且响应迅速的薄膜。在一种情况下,我们表明使用结晶紫改性的微凝胶可以产生荧光/发光薄膜。可以使用银纳米粒子修饰的基于pNIPAm的微凝胶获得抗菌膜。最后,我们表明通过此处的方法制造的薄膜可以用作光学传感器中的组件。尽管我们仅显示了此方法实用性的几个示例,但我们认为该技术的表面通用性可以扩展到无数其他应用程序。

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