Liu Zekun, Zhu Tianxue, Wang Junru, Zheng Zijian, Li Yi, Li Jiashen, Lai Yuekun
Department of Materials, The University of Manchester, Oxford Road, Manchester, M13 9PL, UK.
College of Chemical Engineering, Fuzhou University, Fuzhou, 350116, China.
Nanomicro Lett. 2022 Feb 15;14(1):61. doi: 10.1007/s40820-022-00806-8.
Wearable strain sensors are arousing increasing research interests in recent years on account of their potentials in motion detection, personal and public healthcare, future entertainment, man-machine interaction, artificial intelligence, and so forth. Much research has focused on fiber-based sensors due to the appealing performance of fibers, including processing flexibility, wearing comfortability, outstanding lifetime and serviceability, low-cost and large-scale capacity. Herein, we review the latest advances in functionalization and device fabrication of fiber materials toward applications in fiber-based wearable strain sensors. We describe the approaches for preparing conductive fibers such as spinning, surface modification, and structural transformation. We also introduce the fabrication and sensing mechanisms of state-of-the-art sensors and analyze their merits and demerits. The applications toward motion detection, healthcare, man-machine interaction, future entertainment, and multifunctional sensing are summarized with typical examples. We finally critically analyze tough challenges and future remarks of fiber-based strain sensors, aiming to implement them in real applications.
近年来,可穿戴应变传感器因其在运动检测、个人和公共医疗保健、未来娱乐、人机交互、人工智能等方面的潜力而引起了越来越多的研究兴趣。由于纤维具有吸引人的性能,包括加工灵活性、穿着舒适性、出色的寿命和耐用性、低成本和大规模生产能力,许多研究都集中在基于纤维的传感器上。在此,我们综述了纤维材料在功能化和器件制造方面的最新进展,以应用于基于纤维的可穿戴应变传感器。我们描述了制备导电纤维的方法,如纺丝、表面改性和结构转变。我们还介绍了最先进传感器的制造和传感机制,并分析了它们的优缺点。通过典型例子总结了在运动检测、医疗保健、人机交互、未来娱乐和多功能传感方面的应用。我们最后批判性地分析了基于纤维的应变传感器面临的严峻挑战和未来展望,旨在将它们应用于实际应用中。