Zhang Xiuling, Wang Jiaona, Xing Yi, Li Congju
School of Energy and Environmental Engineering University of Science and Technology Beijing Beijing 100083 China.
School of Materials Science & Engineering Beijing Institute of Fashion Technology Beijing 100029 China.
Glob Chall. 2019 Nov 14;3(12):1900070. doi: 10.1002/gch2.201900070. eCollection 2019 Dec.
Wearable and shape-adaptive electronic textiles (E-textiles) for human activities detection such as diversity joints motion are highly desired. However, conventional E-textiles still remain great challenges, such as flexibility, air permeability, and large-area fabrication. Here, a fabric E-textile is developed as a self-powered textile for tracking active motion signals. The fiber-shaped coaxial tribo-sensor is fabricated with silver yarn (Ag) and polytetrafluoroethylene yarn, which allows for integrating well with cloths at large scales due to its satisfactory breathability, good washability, and desirable flexibility. Based on the coaxial-structured design, the fabricated E-textile is optimized to generate the output performance with maximum short-current ( ) of 90 nA and open-voltage ( ) of 8 V. Moreover, the E-textile can also be utilized as a self-powered activity tribo-sensor to monitor the motion signals of the human body. More significantly, the obtained E-textile performs outstanding finger-touching sensitivity, which can be applied in a wireless controller, active sensor, and human-machine interactions. This work presents a new way for a multifunctional E-textile with potential applications in smart home systems, wearable electronics, and personalized healthcare.
人们迫切需要用于检测诸如各种关节运动等人类活动的可穿戴且形状自适应的电子纺织品(电子织物)。然而,传统的电子织物仍然面临着巨大的挑战,如柔韧性、透气性和大面积制造等问题。在此,一种织物电子织物被开发为用于跟踪主动运动信号的自供电纺织品。纤维状同轴摩擦传感器由银纱(Ag)和聚四氟乙烯纱制成,由于其令人满意的透气性、良好的可洗涤性和理想的柔韧性,能够与织物大规模良好集成。基于同轴结构设计,所制备的电子织物经过优化,产生的输出性能最大短路电流( )为90 nA,开路电压( )为8 V。此外,该电子织物还可以用作自供电活动摩擦传感器来监测人体的运动信号。更重要的是,所获得的电子织物具有出色的手指触摸灵敏度,可应用于无线控制器、有源传感器和人机交互中。这项工作为多功能电子织物开辟了一条新途径,在智能家居系统、可穿戴电子设备和个性化医疗保健方面具有潜在应用。