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在亚阈值区工作的柔性压敏接触晶体管。

Flexible Pressure-Sensitive Contact Transistors Operating in the Subthreshold Regime.

作者信息

Baek Sanghoon, Bae Geun Yeol, Kwon Jimin, Cho Kilwon, Jung Sungjune

机构信息

Intelligent Sustainable Materials R&D Group, Research Institute of Sustainable Manufacturing System , Korea Institute of Industrial Technology , Cheonan-si 331-822 , Chungcheongnam-do, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2019 Aug 28;11(34):31111-31118. doi: 10.1021/acsami.9b09636. Epub 2019 Aug 16.

DOI:10.1021/acsami.9b09636
PMID:31373197
Abstract

Organic thin-film transistor (TFT)-based pressure sensors have received huge attention for wearable electronic applications such as health monitoring and smart robotics. However, there still remains a challenge to achieve low power consumption and high sensitivity at the same time for the realization of truly wearable sensor systems where minimizing power consumption is significant because of limited battery run time. Here, we introduce a flexible pressure-sensitive contact transistor (PCT), a new type of pressure-sensing device based on organic TFTs for next-generation wearable electronic skin devices. The PCT consists of deformable S/D electrodes integrated on a staggered TFT. The deformable S/D electrodes were fabricated by embedding conducting single-walled carbon nanotubes on the surface of microstructured polydimethylsiloxane. Under pressure loads, the deformation of the electrodes on an organic semiconductor layer leads modulation of drain current from variation in both the channel geometry and contact resistance. By strategic subthreshold operation to minimize power consumption and increase the dominance of contact resistance because of gated Schottky contact, the PCT achieves both ultralow power consumption (order of 10 nW) and high sensitivity (18.96 kPa). Finally, we demonstrate a 5 × 5 active matrix PCT array on a 3 μm-thick parylene substrate. The device with ultralow power consumption and high sensitivity on a biocompatible flexible substrate makes the PCT promising candidate for next-generation wearable electronic skin devices.

摘要

基于有机薄膜晶体管(TFT)的压力传感器在可穿戴电子应用(如健康监测和智能机器人)中受到了广泛关注。然而,要同时实现低功耗和高灵敏度,对于实现真正的可穿戴传感器系统来说仍然是一个挑战,因为在电池续航时间有限的情况下,将功耗降至最低至关重要。在此,我们介绍一种柔性压敏接触晶体管(PCT),这是一种基于有机TFT的新型压力传感装置,用于下一代可穿戴电子皮肤设备。PCT由集成在交错式TFT上的可变形源漏电极组成。可变形源漏电极是通过将导电单壁碳纳米管嵌入微结构化聚二甲基硅氧烷表面制成的。在压力负载下,有机半导体层上电极的变形会导致漏极电流的调制,这是由于沟道几何形状和接触电阻的变化所致。通过策略性的亚阈值操作来最小化功耗并由于栅控肖特基接触增加接触电阻的主导地位,PCT实现了超低功耗(约10 nW)和高灵敏度(18.96 kPa)。最后,我们在3μm厚的聚对二甲苯基板上展示了一个5×5有源矩阵PCT阵列。该器件在生物相容性柔性基板上具有超低功耗和高灵敏度,使其成为下一代可穿戴电子皮肤设备的有前途的候选者。

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