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A Sensor Array Using Multi-functional Field-effect Transistors with Ultrahigh Sensitivity and Precision for Bio-monitoring

机译:使用具有超高灵敏度和精度的多功能场效应晶体管的传感器阵列用于生物监测

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摘要

Mechanically adaptive electronic skins (e-skins) emulate tactition and thermoception by cutaneous mechanoreceptors and thermoreceptors in human skin, respectively. When exposed to multiple stimuli including mechanical and thermal stimuli, discerning and quantifying precise sensing signals from sensors embedded in e-skins are critical. In addition, different detection modes for mechanical stimuli, rapidly adapting (RA) and slowly adapting (SA) mechanoreceptors in human skin are simultaneously required. Herein, we demonstrate the fabrication of a highly sensitive, pressure-responsive organic field-effect transistor (OFET) array enabling both RA- and SA- mode detection by adopting easily deformable, mechano-electrically coupled, microstructured ferroelectric gate dielectrics and an organic semiconductor channel. We also demonstrate that the OFET array can separate out thermal stimuli for thermoreception during quantification of SA-type static pressure, by decoupling the input signals of pressure and temperature. Specifically, we adopt piezoelectric-pyroelectric coupling of highly crystalline, microstructured poly(vinylidene fluoride-trifluoroethylene) gate dielectric in OFETs with stimuli to allow monitoring of RA- and SA-mode responses to dynamic and static forcing conditions, respectively. This approach enables us to apply the sensor array to e-skins for bio-monitoring of humans and robotics.
机译:机械适应性电子皮肤(e-skins)分别通过人体皮肤中的皮肤机械感受器和热感受器模拟触觉和热感受。当暴露于包括机械和热刺激在内的多种刺激时,辨别和量化来自嵌入电子皮肤的传感器的精确感测信号至关重要。另外,同时需要用于人体皮肤中的机械刺激,快速适应(RA)和缓慢适应(SA)机械感受器的不同检测模式。本文中,我们演示了一种高灵敏度,压力响应性有机场效应晶体管(OFET)阵列的制造,该阵列通过采用易于变形,机电耦合的微结构铁电栅极电介质和有机半导体,能够进行RA模式和SA模式检测渠道。我们还证明,通过对压力和温度的输入信号进行解耦,OFET阵列可以在SA型静压量化期间分离出用于热接收的热刺激。具体而言,我们采用具有刺激性的OFET中高度结晶的微结构聚偏二氟乙烯-三氟乙烯栅极电介质的压电-热电偶合,以分别监控RA和SA模式对动态和静态强迫条件的响应。这种方法使我们能够将传感器阵列应用于电子皮肤,从而对人类和机器人进行生物监控。

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