材料科学
压力传感器
耐久性
电容感应
线性
制作
光电子学
氢传感器
离子键合
弹性体
纳米技术
离子
复合材料
电气工程
电子工程
化学
有机化学
替代医学
钯
催化作用
病理
工程类
物理
热力学
医学
生物化学
作者
Sudeep Sharma,Ashok Chhetry,Shipeng Zhang,Hyosang Yoon,Chani Park,Hyun‐Sik Kim,Md Sharifuzzaman,Xue Hui,Jae Yeong Park
出处
期刊:ACS Nano
[American Chemical Society]
日期:2021-01-14
卷期号:15 (3): 4380-4393
被引量:228
标识
DOI:10.1021/acsnano.0c07847
摘要
Recently, flexible capacitive pressure sensors have received significant attention in the field of wearable electronics. The high sensitivity over a wide linear range combined with long-term durability is a critical requirement for the fabrication of reliable pressure sensors for versatile applications. Herein, we propose a special approach to enhance the sensitivity and linearity range of a capacitive pressure sensor by fabricating a hybrid ionic nanofibrous membrane as a sensing layer composed of Ti3C2Tx MXene and an ionic salt of lithium sulfonamides in a poly(vinyl alcohol) elastomer matrix. The reversible ion pumping triggered by a hydrogen bond in the hybrid sensing layer leads to high sensitivities of 5.5 and 1.5 kPa–1 in the wide linear ranges of 0–30 and 30–250 kPa, respectively, and a fast response time of 70.4 ms. In addition, the fabricated sensor exhibits a minimum detection limit of 2 Pa and high durability over 20 000 continuous cycles even under a high pressure of 45 kPa. These results indicate that the proposed sensor can be potentially used in mobile medical monitoring devices and next-generation artificial e-skin.
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