材料科学
渗透(认知心理学)
多孔性
电容感应
复合材料
碳纳米管
弹性体
填料(材料)
渗流阈值
渗流理论
纳米管
纳米技术
电阻率和电导率
电导率
电气工程
计算机科学
工程类
物理化学
神经科学
化学
操作系统
生物
作者
Jungrak Choi,Donguk Kwon,Kyuyoung Kim,Jaeho Park,Dionisio Del Orbe,Jimin Gu,Junseong Ahn,Incheol Cho,Yongrok Jeong,Yongsuk Oh,Inkyu Park
标识
DOI:10.1021/acsami.9b20097
摘要
Wearable pressure sensors have been attracting great attention for a variety of practical applications, including electronic skin, smart textiles, and healthcare devices. However, it is still challenging to realize wearable pressure sensors with sufficient sensitivity and low hysteresis under small mechanical stimuli. Herein, we introduce simple, cost-effective, and sensitive capacitive pressure sensor based on porous Ecoflex-multiwalled carbon nanotube composite (PEMC) structures, which leads to enhancing the sensitivity (6.42 and 1.72 kPa-1 in a range of 0-2 and 2-10 kPa, respectively) due to a synergetic effect of the porous elastomer and percolation of carbon nanotube fillers. The PEMC structure shows excellent mechanical deformability and compliance for an effective integration with practical wearable devices. Also, the PEMC-based pressure sensor shows not only the long-term stability, low-hysteresis, and fast response under dynamic loading but also the high robustness against temperature and humidity changes. Finally, we demonstrate a prosthetic robot finger integrated with a PEMC-based pressure sensor and an actuator as well as a healthcare wristband capable of continuously monitoring blood pressure and heart rate.
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