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Conducting polymer based biomolecular electronic devices

机译:导电聚合物基生物分子电子器件

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Biomolecular electronics is rapidly evolving from physics, chemistry, biology, electronics and information technology. Organic materials such as proteins, pigments and conducting polymers have been considered as alternatives for carrying out the functions that are presently being performed by semiconductor silicon. Conducting polymers such as polypyrroles, polythiophenes and polyanilines have been projected for applications for a wide range of biomolecular electronic devices such as optical, electronic, drug-delivery, memory and biosensing devices. Our group has been actively working towards the application of conducting polymers to Schottky diodes, metala€“insulatora€“semiconductor (MIS) devices and biosensors for the past 10 years. This paper is a review of some of the results obtained at our laboratory in the area of conducting polymer biomolecular electronics.
机译:生物分子电子学正从物理学,化学,生物学,电子学和信息技术迅速发展。诸如蛋白质,颜料和导电聚合物之类的有机材料已被认为是实现目前由半导体硅执行的功能的替代方法。诸如聚吡咯,聚噻吩和聚苯胺之类的导电聚合物已被预测用于各种生物分子电子设备,例如光学,电子,药物输送,存储和生物传感设备。在过去的十年中,我们小组一直在积极致力于将导电聚合物应用于肖特基二极管,金属绝缘体(MIS)器件和生物传感器。本文是对我们实验室在导电聚合物生物分子电子学领域获得的一些结果的综述。

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