Interfacially Locked Metal Aerogel Inside Porous Polymer Composite for Sensitive and Durable Flexible Piezoresistive Sensors

材料科学 压阻效应 气凝胶 耐久性 纳米技术 聚二甲基硅氧烷 压力传感器 复合数 图层(电子) 复合材料 机械工程 工程类
作者
Jian Li,Ning Li,Yuanyuan Zheng,Dongyang Lou,Yue Jiang,Jiaxi Jiang,Qunhui Xu,Jing Yang,Yujing Sun,Chuxuan Pan,Jianlan Wang,Zhengchun Peng,Zhikun Zheng,Wei Liu
出处
期刊:Advanced Science [Wiley]
卷期号:9 (23) 被引量:36
标识
DOI:10.1002/advs.202201912
摘要

Flexible pressure sensors play significant roles in wearable devices, electronic skins, and human-machine interface (HMI). However, it remains challenging to develop flexible piezoresistive sensors with outstanding comprehensive performances, especially with excellent long-term durability. Herein, a facile "interfacial locking strategy" has been developed to fabricate metal aerogel-based pressure sensors with excellent sensitivity and prominent stability. The strategy broke the bottleneck of the intrinsically poor mechanical properties of metal aerogels by grafting them on highly elastic melamine sponge with the help of a thin polydimethylsiloxane (PDMS) layer as the interface-reinforcing media. The hierarchically porous conductive structure of the ensemble offered the as-prepared flexible piezoresistive sensor with a sensitivity as high as 12 kPa-1 , a response time as fast as 85 ms, and a prominent durability over 23 000 compression cycles. The excellent comprehensive performance enables the successful application of the flexible piezoresistive sensor as two-dimensional (2D) array device as well as three-dimensional (3D) force-detecting device for real-time monitoring of HMI activities.

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