A conductive bio-hydrogel with high conductivity and mechanical strength via physical filling of electrospinning polyaniline fibers

材料科学 静电纺丝 复合材料 聚苯胺 电导率 极限抗拉强度 导电体 纤维 纳米纤维 肿胀 的 聚合物 化学 聚合 物理化学
作者
Jie Chen,Xiaohui Wang,Lê H. Dao,Lu Liu,Ying Yang,Jingwen Li,Shuyi Wu,Yongqiang Cheng,Jie Pang
出处
期刊:Colloids and Surfaces A: Physicochemical and Engineering Aspects [Elsevier]
卷期号:637: 128190-128190 被引量:14
标识
DOI:10.1016/j.colsurfa.2021.128190
摘要

The development of bio-based conductive hydrogel has become the research frontier of flexible sensors. However, it is a challenge to prepare a simple method to prepare bio-based conductive hydrogel with excellent stability, tensile strength, and conductivity. Here, we show a simple strategy to prepare conductive, stretchable, and stable hydrogel (KKLN). The KKLN consists of the conductive polyaniline (PANI) fiber prepared by electrospinning and lithium ions (Li+) in physical form, which has the all-biological matrix with Konjac glucomannan / K-Carrageen (KGM-KC) interpenetrating network structure. In this system, the hydrogel shows remarkable mechanical property (strength: 239.26 kPa, strain: 340.69%) and high conductivity (7261 μs/cm) because contribution of PANI fiber and Li+. And the KKLN exhibits outstanding characteristic on the swelling and heat stability performance. Furthermore, it was confirmed that the prepared hydrogel can accurately monitor the movement of the body parts, including the index finger, elbow, wrist, and knee. Therefore, this prepared method and introduction of the fiber prepared by electrospinning provide a new strategy to promote the further development of flexible sensors based on the biological matrix.
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