相关链接
联系方式
  • 通信地址:湖北省武汉市东湖新技术开发区光谷一路206号
  • 邮编:430205
  • 电话:QQ767970636
  • 传真:QQ767970636
  • Email:zhangyunfei012@126.com
当前位置:> 首页 > 论文著作 > 正文
Stretchable and tough PAANa/PEDOT:PSS/PVA conductive hydrogels for flexible strain sensors
作者:Jia-Yan Gong, Fu-Chang Sun, Yu-Chen Pan, An-Min Fei, Si-Fan Leicheng, Fei-Peng Du, Yun-Fei Zhang
关键字:PVA hydrogels, PEDOT:PSS, PAANa, Mechanical properties, Electrical conductivity, Strain sensors
论文来源:期刊
具体来源:Materials Today Communications
发表时间:2022年
Recently, flexible wearable health monitoring devices have significantly emerged as portable monitoring devices into human life. Owing to the applications of wearable electronics, flexible conductive hydrogel sensors that combine both stretchability and toughness have attracted lots of attention but still face challenges. Here, using semi-interpenetrating network (SIPN) strategy and cyclic freeze-thaw treatments, conductive hydrogels with stretchability, toughness, and sensitivity were prepared, which were composed of polyvinyl alcohol (PVA) as matrix network, poly (3, 4-ethylenedioxythiophene):poly(styrene sulfonate) (PEDOT:PSS) as conductive medium, sodium polyacrylate (PAANa) as reinforcing agent. The results showed that doping of PAANa not only improved the tensile strength, but also enhanced the electrical conductivity from 0.054 S m-1 to 0.146 S m-1. Furthermore, after being treated with saturated NaCl salt solution, the compact hydrogel exhibited an optimum tensile strength and electrical conductivity of 1.97 MPa and 0.327 S m-1, respectively. As an illustration, the obtained hydrogel was applied to detect finger and wrist bending movements, which exhibited stable amplitude and frequency. Given the enhanced mechanical and strain-sensitive properties of the wearable sensors, as well as the described propagable fabrication approach, this stretchable, tough hydrogel with sensitivity has potential applications in flexible wearable strain sensors.