School of Chemical and Materials Engineering, National University of Sciences and Technology, Islamabad, 44000, Pakistan.
Sci Rep. 2022 Mar 22;12(1):4882. doi: 10.1038/s41598-022-08801-0.
Flexible strain sensors are an important constituent in soft robotics, health care devices, and in the defence industry. Strain sensors are characterized by their sensitivity (gauge factor-GF) and sensing range. In flexible strain sensors, simultaneously achieving consistency and high sensitivity has always been challenging. A number of materials and their derivatives have been explored to achieve balanced sensitivity with respect to sensing range with limited results. In this work, a low-cost flexible piezoresistive strain sensor has been developed using reduced graphene oxide (rGO) on polydimethylsiloxane (PDMS). The reduction has been performed using laser scribing, which enables the fabrication of arbitrary structures. After lead-out, the devices were again sandwiched in a layer of PDMS to secure the structures before performing their testing using a locally developed testing rig. Compared to previously reported graphene strain sensors, the devices fabricated in this work show relatively high GF with respect to sensing range. The GF calculated for stretching, bending and torsion was 12.1, 3.5, and 90.3 respectively, for the strain range of 0-140%, 0-130%, and 0-11.1%. A hand test was performed for the detection of joint movement. Change of resistance has been observed indicating muscle motion.
柔性应变传感器是软机器人、医疗设备和国防工业的重要组成部分。应变传感器的特点是灵敏度(应变系数-GF)和感测范围。在柔性应变传感器中,同时实现一致性和高灵敏度一直是具有挑战性的。已经探索了许多材料及其衍生物,以在有限的结果下实现与感测范围有关的平衡灵敏度。在这项工作中,使用还原氧化石墨烯(rGO)在聚二甲基硅氧烷(PDMS)上开发了一种低成本的柔性压阻应变传感器。还原是通过激光划线进行的,这使得可以制造任意结构。引出后,再次将器件夹在 PDMS 层中,以在使用本地开发的测试台进行测试之前固定结构。与以前报道的石墨烯应变传感器相比,本工作中制造的器件在感测范围方面表现出相对较高的 GF。对于拉伸、弯曲和扭转,应变范围为 0-140%、0-130%和 0-11.1%时,计算出的 GF 分别为 12.1、3.5 和 90.3。进行了手部测试以检测关节运动。观察到电阻的变化表明肌肉运动。