Department of Electronic Engineering , Ming Chi University of Technology , Taishan District, 24301 New Taipei City , Taiwan.
Department of Neurosurgery , Asia University Hospital , Wufeng District, 41354 Taichung , Taiwan.
ACS Appl Mater Interfaces. 2019 Sep 18;11(37):34305-34315. doi: 10.1021/acsami.9b10575. Epub 2019 Sep 5.
Piezoresistive pressure sensors have garnered significant attention because of their wide applications in automobiles, intelligent buildings, and biomedicine. For in vivo testing, the size of pressure sensors is a vital factor to monitor the pressure of specific portions of a human body. Therefore, the primary focus of this study is to miniaturize piezoresistive pressure sensors with graphene oxide (GO)-incorporated poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS) composite films on a flexible substrate for biomedical applications. Prior to the fabrication of pressure sensors, a comprehensive material analysis was applied to identify the horizontal placement of GO flakes within the PEDOT:PSS copolymers, revealing a reduction in variable range hopping distance and an enhancement in carrier mobility. For devices scaled to 0.2 cm, the sensitivity of PEDOT:PSS pressure sensors was conspicuously decreased owing to the late response, which can be effectively solved by GO incorporation. Using technology computer-aided design simulations, the current crowded at the PEDOT:PSS film surface and in the vicinity of an indium-tin-oxide electrode corner was found to be responsible for the changes in piezoresistive behaviors of the scaled devices. The miniaturized flexible piezoresistive pressure sensors with PEDOT:PSS/GO composite films are capable of monitoring the brain pressure of intracranial surgery of a rat and discerning different styles of music for a potential application in hearing aids.
压阻式压力传感器因其在汽车、智能建筑和生物医学中的广泛应用而受到广泛关注。对于体内测试,压力传感器的尺寸是监测人体特定部位压力的一个重要因素。因此,本研究的主要重点是在柔性衬底上用掺入氧化石墨烯(GO)的聚(3,4-亚乙基二氧噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS)复合薄膜来制造微型压阻式压力传感器,用于生物医学应用。在制造压力传感器之前,进行了全面的材料分析,以确定 GO 薄片在 PEDOT:PSS 共聚物中的水平位置,结果表明可变范围跳跃距离减小,载流子迁移率提高。对于缩放到 0.2cm 的器件,由于迟滞响应,PEDOT:PSS 压力传感器的灵敏度明显降低,而掺入 GO 可以有效地解决这个问题。通过使用计算机辅助设计技术模拟,发现 PEDOT:PSS 薄膜表面和氧化铟锡电极角附近的电流是导致缩尺寸器件压阻行为变化的原因。具有 PEDOT:PSS/GO 复合薄膜的微型柔性压阻压力传感器能够监测大鼠颅内手术的脑压,并辨别不同风格的音乐,有望应用于助听器。