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New directions in medical biosensors employing poly(3,4-ethylenedioxy thiophene) derivative-based electrodes

机译:使用基于聚(3,4-乙撑二氧噻吩)衍生物的电极的医用生物传感器的新方向

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摘要

Demand is growing in the field of medical diagnostics for simple, disposable devices that also demonstrate fast response times, are easy to handle, are cost-efficient, and are suitable for mass production. Polymer-based microfluidic devices meet the requirements of cost efficiency and mass production and they are suitable for biosensor applications. Conducting polymer-based electrochemical sensors have shown numerous advantages in a number of areas related to human health, such as the diagnosis of infectious diseases, genetic mutations, drug discovery, forensics and food technology, due to their simplicity and high sensitivity. One of the most promising group of conductive polymers is poly(3,4-ethylenedioxythiophene) (PEDOT) and its derivatives due to their attractive properties: high stability, high conductivity (up to 400–600 S/cm) and high transparency. This review paper summarizes newly developed methods associated with the application of PEDOT to diagnostic sensing.
机译:在医学诊断领域,对简单,一次性设备的需求正在增长,这些设备也显示出快速的响应时间,易于操作,具有成本效益并且适合批量生产。基于聚合物的微流控设备可满足成本效益和批量生产的要求,并且适用于生物传感器应用。导电的基于聚合物的电化学传感器由于其简单性和高灵敏度而在与人类健康有关的许多领域中显示出许多优势,例如传染病的诊断,基因突变,药物发现,法医学和食品技术。聚(3,4-乙撑二氧噻吩)(PEDOT)及其衍生物是最有前景的导电聚合物之一,由于其具有吸引人的特性:高稳定性,高电导率(最高400-600 S / cm)和高透明度。这篇综述文章总结了与PEDOT在诊断传感中的应用相关的新开发方法。

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