Zhong Mian, Zou Yao, Fan Hongyun, Li Shichen, Zhao Yilin, Li Bin, Li Bo, Jiang Yong, Xing Xiaoqing, Shen Jiaqing, Zhou Chao
Institute of Electronic and Electrical Engineering, Civil Aviation Flight University of China, Deyang 618307, China.
Faculty of Chemical Engineering, Kunming University of Science and Technology, Kunming 650500, China.
Micromachines (Basel). 2024 Jul 31;15(8):989. doi: 10.3390/mi15080989.
The advancement in performance in the domain of flexible wearable strain sensors has become increasingly significant due to extensive research on laser-induced graphene (LIG). An innovative doping modification technique is required owing to the limited progress achieved by adjusting the laser parameters to enhance the LIG's performance. By pre-treating with AgNO, we successfully manufactured LIG with a uniform dispersion of silver nanoparticles across its surface. The experimental results for the flexible strain sensor exhibit exceptional characteristics, including low resistance (183.4 Ω), high sensitivity (426.8), a response time of approximately 150 ms, and a relaxation time of about 200 ms. Moreover, this sensor demonstrates excellent stability under various tensile strains and remarkable repeatability during cyclic tests lasting up to 8000 s. Additionally, this technique yields favorable results in finger bending and hand back stretching experiments, holding significant reference value for preserving the inherent characteristics of LIG preparation in a single-step and in situ manner.
由于对激光诱导石墨烯(LIG)的广泛研究,柔性可穿戴应变传感器领域的性能提升变得越来越重要。由于通过调整激光参数来提高LIG性能所取得的进展有限,因此需要一种创新的掺杂改性技术。通过用AgNO进行预处理,我们成功制造出了表面均匀分散有银纳米颗粒的LIG。柔性应变传感器的实验结果显示出优异的特性,包括低电阻(183.4Ω)、高灵敏度(426.8)、约150ms的响应时间和约200ms的弛豫时间。此外,该传感器在各种拉伸应变下表现出出色的稳定性,在长达8000s的循环测试中具有显著的可重复性。此外,该技术在手指弯曲和手背伸展实验中产生了良好的结果,对于以单步和原位方式保持LIG制备的固有特性具有重要的参考价值。