Tang Xinyue, Yang Weidong, Yin Shuran, Tai Guojun, Su Min, Yang Jin, Shi Haofei, Wei Dapeng, Yang Jun
Chongqing Institute of Green and Intelligent Technology, Chinese Academy of Sciences, Chongqing 400714, P. R. China.
University of Chinese Academy of Sciences, Beijing 100049, P. R. China.
ACS Appl Mater Interfaces. 2021 May 5;13(17):20448-20458. doi: 10.1021/acsami.0c22784. Epub 2021 Apr 25.
Flexible pressure sensors have aroused tremendous attention, owing to their broad applications in healthcare, robotics, and prosthetics. So far, it remains a critical challenge to develop low-cost and controllable microstructures for flexible pressure sensors. Herein, a high-sensitivity and low-cost flexible piezoresistive sensor was developed by combining a controllable graphene-nanowalls (GNWs) wrinkle and a polydimethylsiloxane (PDMS) elastomer. For the GNWs-PDMS bilayer, the vertically grown GNWs film can effectively improve the interface strength and form delamination-free conformal wrinkles. More importantly, a controllable microstructure can be easily tuned through the thermal wrinkling method. The wrinkled graphene-nanowalls (WG) piezoresistive sensor has a high sensitivity ( = 59.0 kPa for the 0-2 kPa region and = 4.8 kPa for the 2-20 kPa region), a fast response speed (<6.9 ms), and a low limit of detection (LOD) of 2 mg (∼0.2 Pa). The finite element method was used to analyze the working mechanism of the sensor, which revealed that the periods of the wrinkles play a dominant role in the performances of the sensors. These prominent merits enable wrinkled graphene sensors to successfully detect various signals from a weak stimulus to large pressures, for example, the detection of weak gas and plantar pressure. Furthermore, object manipulation, tactile imaging, and braille recognition applications have been demonstrated, showing their great potential in prosthetics limbs and intelligent robotics.
柔性压力传感器因其在医疗保健、机器人技术和假肢等领域的广泛应用而引起了极大关注。到目前为止,开发用于柔性压力传感器的低成本且可控的微结构仍然是一项严峻挑战。在此,通过结合可控的石墨烯纳米壁(GNWs)褶皱和聚二甲基硅氧烷(PDMS)弹性体,开发了一种高灵敏度且低成本的柔性压阻传感器。对于GNWs-PDMS双层结构,垂直生长的GNWs薄膜可有效提高界面强度并形成无分层的共形褶皱。更重要的是,通过热皱法可以轻松调节可控的微结构。褶皱石墨烯纳米壁(WG)压阻传感器具有高灵敏度(0-2 kPa区域内为59.0 kPa,2-20 kPa区域内为4.8 kPa)、快速响应速度(<6.9 ms)以及2 mg(约0.2 Pa)的低检测限(LOD)。采用有限元方法分析了传感器的工作机制,结果表明褶皱周期在传感器性能中起主导作用。这些突出优点使褶皱石墨烯传感器能够成功检测从微弱刺激到较大压力的各种信号,例如,微弱气体检测和足底压力检测。此外,还展示了物体操纵、触觉成像和盲文识别应用,显示出它们在假肢和智能机器人领域的巨大潜力。