Zhao Xinhua, Zhao Qian, Chang Yanjiao, Guo Mingzhuo, Wu Siyang, Wang Hanqi, Hou Yihao, Zhang Luyu, Liu Chang, Wu Han, Liang Yunhong, Ren Luquan
The Key Laboratory of Bionic Engineering, Ministry of Education, Jilin University, Changchun 130025, China.
College of Food Science and Engineering, Jilin University, Changchun 130062, China.
Polymers (Basel). 2023 Jul 26;15(15):3174. doi: 10.3390/polym15153174.
The novel conductive polyvinylidene fluoride (PVDF) fibrous membrane with high conductivity and sensitivity was successfully prepared via electrostatic spinning and efficient silver reduction technology. Based on the selective dissolution of porogen of polyvinylpyrrolidone (PVP), the porous PVDF fibrous membrane with excellent adsorbability and mechanical strength was obtained, providing a structure base for the preparation of conductive PVDF fibrous membrane with silver nanoparticles (AgNPs-PVDF). The Ag in the AgNO mixed solution with PVP was absorbed and maintained in the inner parts and surface of the porous structure. After the reducing action of ascorbic acid-mixed solution with PVP, silver nanoparticles were obtained tightly in an original porous PVDF fibrous membrane, realizing the maximum conductivity of 2500 S/m. With combined excellent conductivity and mechanical strength, the AgNPs-PVDF fibrous membrane effectively and sensitively detected strain signals of throat vocalization, elbow, wrist, finger, and knee (gauge factor of 23). The electrospun conductive AgNPs-PVDF combined the characteristics of low resistance, high mechanical strength, and soft breathability, which provided a new and effective preparation method of conductive fibers for practical application in wearable devices.
通过静电纺丝和高效银还原技术成功制备了具有高导电性和灵敏度的新型导电聚偏氟乙烯(PVDF)纤维膜。基于聚乙烯吡咯烷酮(PVP)致孔剂的选择性溶解,获得了具有优异吸附性和机械强度的多孔PVDF纤维膜,为制备含银纳米颗粒的导电PVDF纤维膜(AgNPs-PVDF)提供了结构基础。含PVP的AgNO混合溶液中的银被吸收并保留在多孔结构的内部和表面。在抗坏血酸混合溶液与PVP的还原作用后,在原始多孔PVDF纤维膜中紧密获得银纳米颗粒,实现了2500 S/m的最大电导率。具有优异的导电性和机械强度相结合,AgNPs-PVDF纤维膜有效且灵敏地检测了喉咙发声、肘部、腕部、手指和膝盖的应变信号(应变片系数为23)。静电纺丝导电AgNPs-PVDF结合了低电阻、高机械强度和柔软透气性的特点,为可穿戴设备的实际应用提供了一种新型有效的导电纤维制备方法。