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Controlled syntheses of conducting polymer micro- and nano-structures for potential applications

机译:导电聚合物微结构和纳米结构的受控合成,可用于潜在应用

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The development of nanostructured polymers has opened up novel fundamental and applied frontiers, which has attracted tremendous interest in recent years. We have recently developed techniques for the micro-lithographic formation of conducting polymer patterns on the micrometer scale and for coating conducting polymers on individual aligned carbon nanotubes. The micro- and nano-fabrication facilitates the use of conducting polymers for various applications ranging from multicolor polymer light-emitting displays to biosensors. More recently, we have demonstrated the controlled syntheses of conducting polymer microcontainers through electrochemical generation of surfactant (i.e. p-napthalenesulfonic acid, beta-NSA)-stabilized H_2 gas bubbles on the working electrode, followed by electrochemical polymerization of pyrrole around the wall of the "soap bubble" template. By pre-patterning the working electrode surface with non-conducting polymers through micro-contact printing (JACP) or plasma patterning, we have also produced conducting polymer microcontainers in a patterned fashion. Furthermore, potential applications of the patterned and non-patterned conducting polymer microcontainers have been demonstrated, for example, by immobilizing glucouse oxidase (GOX) onto the conducting polymer microcontainers for glucose sensing. This paper provides a brief summary of our work on micro- and nano- fabrication of conducting polymer for various potential applications.
机译:纳米结构聚合物的发展开辟了新的基础和应用领域,近年来引起了极大的兴趣。我们最近开发了用于在微米级上微光刻形成导电聚合物图案的技术,以及在单个排列的碳纳米管上涂覆导电聚合物的技术。微细加工和纳米加工促进了导电聚合物在从多色聚合物发光显示器到生物传感器的各种应用中的使用。最近,我们已经证明了通过在工作电极上电化学生成表面活性剂(即对萘磺酸,β-NSA)稳定的H_2气泡,然后在电极壁周围进行吡咯的电化学聚合,可控制地合成导电聚合物微容器的方法。 “肥皂泡”模板。通过通过微接触印刷(JACP)或等离子图案化使用非导电聚合物对工作电极表面进行预图案化,我们还以图案化方式生产了导电聚合物微容器。此外,例如通过将葡萄糖氧化酶(GOX)固定在用于葡萄糖感测的导电聚合物微容器上,已经证明了图案化和非图案化的导电聚合物微容器的潜在应用。本文简要概述了我们在各种潜在应用的导电聚合物的微米和纳米制造方面的工作。

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