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A Printed Organic Amplification System for Wearable Potentiometric Electrochemical Sensors

机译:穿戴式电位电化学传感器的印刷有机放大系统

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摘要

Electrochemical sensor systems with integrated amplifier circuits play an important role in measuring physiological signals via in situ human perspiration analysis. Signal processing circuitry based on organic thin-film transistors (OTFTs) have significant potential in realizing wearable sensor devices due to their superior mechanical flexibility and biocompatibility. Here, we demonstrate a novel potentiometric electrochemical sensing system comprised of a potassium ion (K+) sensor and amplifier circuits employing OTFT-based pseudo-CMOS inverters, which have a highly controllable switching voltage and closed-loop gain. The ion concentration sensitivity of the fabricated K+ sensor was 34 mV/dec, which was amplified to 160 mV/dec (by a factor of 4.6) with high linearity. The developed system is expected to help further the realization of ultra-thin and flexible wearable sensor devices for healthcare applications.
机译:带有集成放大器电路的电化学传感器系统在通过人体原位汗液分析测量生理信号中起着重要作用。基于有机薄膜晶体管(OTFT)的信号处理电路具有出色的机械柔韧性和生物相容性,因此在实现可穿戴传感器设备方面具有巨大潜力。在这里,我们演示了一种新型的电位电化学传感系统,该系统由钾离子(K + )传感器和采用基于OTFT的伪CMOS反相器的放大电路组成,该反相器具有高度可控的开关电压和闭环获得。制作的K + 传感器的离子浓度灵敏度为34 mV / dec,并以高线性度放大到160 mV / dec(倍数为4.6)。预计开发的系统将有助于进一步实现用于医疗保健应用的超薄且灵活的可穿戴传感器设备。

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