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Conducting Polymers in the Design of Biosensors and Biofuel Cells

机译:在生物传感器和生物燃料细胞的设计中进行聚合物

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摘要

Fast and sensitive determination of biologically active compounds is very important in biomedical diagnostics, the food and beverage industry, and environmental analysis. In this review, the most promising directions in analytical application of conducting polymers (CPs) are outlined. Up to now polyaniline, polypyrrole, polythiophene, and poly(3,4-ethylenedioxythiophene) are the most frequently used CPs in the design of sensors and biosensors; therefore, in this review, main attention is paid to these conducting polymers. The most popular polymerization methods applied for the formation of conducting polymer layers are discussed. The applicability of polypyrrole-based functional layers in the design of electrochemical biosensors and biofuel cells is highlighted. Some signal transduction mechanisms in CP-based sensors and biosensors are discussed. Biocompatibility-related aspects of some conducting polymers are overviewed and some insights into the application of CP-based coatings for the design of implantable sensors and biofuel cells are addressed. New trends and perspectives in the development of sensors based on CPs and their composites with other materials are discussed.
机译:在生物医学诊断,食品和饮料行业以及环境分析中,对生物活性化合物的快速和敏感的测定非常重要。在本文中,概述了导电聚合物(CPS)的分析应用中最有希望的方向。到目前为止,多蛋白酶,聚吡咯,聚噻吩和聚(3,4-亚乙二氧基噻吩)是传感器和生物传感器设计中最常使用的CP;因此,在本综述中,主要注意这些导电聚合物。讨论了用于形成导电聚合物层的最普遍的聚合方法。突出了基于滤萘基功能层的适用性和生物燃料电池设计中的基于粘吡咯基功能层。讨论了基于CP的传感器和生物传感器中的一些信号转导机制。概述了一些导电聚合物的生物相容性相关方面,并且解决了用于植入传感器和生物燃料电池设计的CP基涂层的应用。讨论了基于CPS及其与其他材料的传感器开发的新趋势和观点。

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