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聚噻吩及其在电流型传感中的基于聚噻吩的复合材料。

Polythiophenes and polythiophene-based composites in amperometric sensing.

机构信息

Department of Chemical and Geological Sciences, University of Modena and Reggio E, Modena, Italy.

出版信息

Anal Bioanal Chem. 2013 Jan;405(2-3):509-31. doi: 10.1007/s00216-012-6318-7. Epub 2012 Sep 1.

Abstract

This overview of polythiophene-based materials provides a critical examination of meaningful examples of applications of similar electrode materials in electroanalysis. The advantages arising from the use of polythiophene derivatives in such an applicative context is discussed by considering the organic conductive material as such, and as one of the components of hybrid materials. The rationale at the basis of the combination of two or even more individual components into a hybrid material is discussed with reference to the active electrode processes and the consequent possible improvements of the electroanalytical performance. In this respect, study cases are presented considering different analytes chosen among those that are most frequently reported within the classes of organics and inorganics. The use of a polythiophene matrix to stably fix biological elements at the electrode surface for the development of catalytic biosensors and genosensors is also discussed. Finally, a few possible lines along which the next research in the field could be fruitfully pursued are outlined. Furthermore, the work still to be done to exploit the possibilities offered by novel products of organic synthesis, even along paths already traced in other fields of electrochemistry, is discussed.

摘要

本文综述了聚噻吩类材料,批判性地考察了类似电极材料在电分析中的应用的有意义实例。通过将聚噻吩衍生物视为有机导电材料本身,以及作为混合材料的组成部分之一,讨论了在这种应用背景下使用聚噻吩衍生物的优势。讨论了将两种甚至更多种单独成分组合成混合材料的基本原理,参考了活性电极过程以及由此可能对电分析性能的改进。在这方面,提出了考虑不同分析物的研究案例,这些分析物选自有机物和无机物中最常报道的类别。还讨论了使用聚噻吩基质在电极表面稳定固定生物元素,以开发催化生物传感器和基因传感器。最后,概述了该领域未来可能富有成效的研究方向。此外,还讨论了为了利用有机合成的新产品提供的可能性,即使沿着已经在电化学的其他领域中追踪的路径,仍有工作要做。

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