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A Study on the Stability of Water-Gated Organic Field-Effect-Transistors Based on a Commercial p-Type Polymer

机译:基于商用p型聚合物的水控有机场效应晶体管的稳定性研究

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摘要

Robust electrolyte-gated organic field-effect-transistors (OFETs) are particularly needed for the development of biosensing devices. However, when a FET biosensor operates in aqueous environments or even in real biological fluids, some critical issues may arise due to the possible lack of environmental long-term and/or operational stability. An important source of instability is associated with the degradation of the organic electronic channel materials such as for instance, poly-3-hexylthiophene (P3HT), a benchmark commercially available p-type organic semiconductor. In this work, the investigation of critical parameters, such as the control over spurious electrochemical phenomena as well as the operating conditions that can affect water-gated OFETs lifetime, is reported, together with a proposed modeling of the P3HT stability curve over 1 week in water. The investigation of possible morphological/chemical modifications occurring at the polymer surface after operating in water for 2 weeks was carried out. Moreover, it is proven how the addition of a gel layer can extend the P3HT based water-gated OFET shelf life up to 2 months.
机译:开发生物传感设备特别需要坚固的电解质门控有机场效应晶体管(OFET)。但是,当FET生物传感器在水性环境甚至实际生物流体中运行时,由于可能缺乏环境长期和/或操作稳定性,可能会出现一些关键问题。不稳定性的重要来源与有机电子通道材料(例如,聚-3-己基噻吩(P3HT))的降解有关,聚3-己基噻吩是一种基准的商用p型有机半导体。在这项工作中,报告了关键参数的研究,例如对杂散电化学现象的控制以及可能影响水控OFETs寿命的工作条件,以及拟议的P3HT稳定性曲线在1周内的建模。水。在水中操作2周后,对聚合物表面可能发生的形态/化学修饰进行了研究。而且,已经证明添加凝胶层如何将基于P3HT的水控OFET的保存期限延长至2个月。

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