Wang Jun, Jiu Jinting, Nogi Masaya, Sugahara Tohru, Nagao Shijo, Koga Hirotaka, He Peng, Suganuma Katsuaki
State Key Laboratory of Advanced Welding and Joining, Harbin Institute of Technology, Harbin 150001, China.
Nanoscale. 2015 Feb 21;7(7):2926-32. doi: 10.1039/c4nr06494a.
The next-generation application of pressure sensors is gradually being extended to include electronic artificial skin (e-skin), wearable devices, humanoid robotics and smart prosthetics. In these advanced applications, high sensing capability is an essential feature for high performance. Although surface patterning treatments and some special elastomeric interlayers have been applied to improve sensitivity, the process is complex and this inevitably raises the cost and is an obstacle to large-scale production. In the present study a simple printing process without complex patterning has been used for constructing the sensor, and an interlayer is employed comprising elastomeric composites filled with silver nanowires. By increasing the relative permittivity, εr, of the composite interlayer induced by compression at high nanowire concentration, it has been possible to achieve a maximum sensitivity of 5.54 kPa(-1). The improvement in sensitivity did not sacrifice or undermine the other features of the sensor. Thanks to the silver nanowire electrodes, the sensor is flexible and stable after 200 cycles at a bending radius of 2 mm, and exhibits outstanding reproducibility without hysteresis under similar pressure pulses. The sensor has been readily integrated onto an adhesive bandage and has been successful in detecting human movements. In addition to measuring pressure in direct contact, non-contact pressures such as air flow can also be detected.
压力传感器的下一代应用正逐渐扩展到电子人造皮肤(电子皮肤)、可穿戴设备、仿人机器人和智能假肢等领域。在这些先进应用中,高传感能力是高性能的基本特征。尽管已经应用了表面图案化处理和一些特殊的弹性体中间层来提高灵敏度,但过程复杂,这不可避免地增加了成本,并且成为大规模生产的障碍。在本研究中,一种无需复杂图案化的简单印刷工艺被用于构建传感器,并且采用了一种包含填充银纳米线的弹性体复合材料的中间层。通过在高纳米线浓度下压缩诱导复合材料中间层的相对介电常数εr增加,已实现了5.54 kPa(-1)的最大灵敏度。灵敏度的提高并未牺牲或损害传感器的其他特性。得益于银纳米线电极,该传感器在2 mm弯曲半径下经过200次循环后具有柔韧性和稳定性,并且在类似压力脉冲下表现出出色的重现性且无滞后现象。该传感器已很容易集成到创可贴上,并成功用于检测人体运动。除了测量直接接触的压力外,还可以检测气流等非接触压力。