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All poly(3,4-ethylenedioxythiophene) organic electrochemical transistor to amplify amperometric signals

机译:所有聚(3,4-亚乙二氧基噻吩)有机电化学晶体管扩增凹凸信号

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Organic Electrochemical Transistors (OECTs) are emerging devices that find applications as sensors because they offer amazing features such as intrinsic signal amplification, low energy consumption, low cost and easy adaptability to new and unconventional architectures. The signal transduction usually exploits a redox reaction as happens in a common amperometric sensor, but the channel of the transistor is able to amplify this signal. This paper aims to thoroughly investigate the amplification of Faradaic currents in OECT sensors that exploit PEDOT:PSS (poly(3,4-ethylenedioxythiophene):poly (styrene sulfonate)) as semiconductor material in the channel and electrochemical transducer. The devices were fabricated with different geometries and thicknesses of PEDOT:PSS in order to find the best configuration. The amplification was studied in phosphate buffer solution as electrolyte by determining the OECT transconductance. A thick PEDOT:PSS layer and a high ratio between gate and channel areas ensure the best performance from an electrical point of view. The amplification was also studied while the OECTs work as chemical sensors for the detection of ascorbic acid. The highest gain was observed for the thickest PEDOT:PSS channel and the lowest ratio between the gate and the channel areas. Moreover, the gate voltage has an important effect on the transistor amplification, being the gain highest (of about 2 orders of magnitude) for the lowest gate voltage. (C) 2018 Elsevier Ltd. All rights reserved.
机译:有机电化学晶体管(OET)是新兴设备,该设备可以找到作为传感器的应用,因为它们提供了惊人的功能,例如内在信号放大,低能量消耗,低成本以及对新的和非传统架构的容易适应性。信号转导通常利用氧化还原反应,如常见的电流传感器中发生,但晶体管的通道能够放大该信号。本文旨在彻底调查利用PEDOT的OEC传感器中的游览电流的扩增:PSS(聚(3,4-亚乙基氧基噻吩):聚(苯乙烯磺酸盐))作为通道和电化学换能器中的半导体材料。这些装置是用不同的几何形状和PEDOT的厚度制造:PSS以找到最佳配置。通过确定OECT跨导,在磷酸盐缓冲溶液中用磷酸盐缓冲溶液进行扩增。厚的PEDOT:PSS层和栅极和沟道区域之间的高比率确保了来自电气观点的最佳性能。还研究了扩增,而OETS作为用于检测抗坏血酸的化学传感器。对于最厚的佩托:PSS通道和栅极和沟道区域之间的最低比率,观察到最高增益。此外,栅极电压对晶体管放大具有重要影响,是最低栅极电压的增益最高(大约2个级)。 (c)2018年elestvier有限公司保留所有权利。

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