超级电容器
自愈水凝胶
电解质
电容
壳聚糖
化学工程
电化学
聚电解质
离子键合
离子电导率
溶解
材料科学
盐(化学)
化学
离子
高分子化学
电极
复合材料
聚合物
有机化学
物理化学
工程类
作者
Kelin Peng,Weizhe Wang,Jinghua Zhang,Yan Ma,Lizhi Lin,Qiang Gan,Yu Chen,Changgen Feng
标识
DOI:10.1016/j.carbpol.2021.118927
摘要
Conductive hydrogels (CHs) are a potential material for flexible electronics. However, most of CHs display disadvantages of low ionic conductivities and intolerance to low temperatures. Herein, a novel physical CHs with salt contents as high as 30 wt% was prepared with chitosan (CTS) and sodium alginate (SA) by combining the anti-polyelectrolyte effect and semi-dissolution acidification sol-gel transition (SD-A-SGT) method. The obtained hydrogels show extremely high ionic conductivities up to 2.96 × 10-1 S·cm-1 at room temperature and 4.9 × 10-2 S·cm-1 at -20 °C. The effects of different salts on the ion mobility and electrochemical properties of CTS/SA CHs were predicted and analyzed. The flexible supercapacitor assembled using CTS/SA CHs as the electrolyte exhibits the specific capacitance as high as 405 F·g-1 at the current density of 0.25 A·g-1 and satisfying electrochemical stability with 74.91% capacitance retention in 1000 cycles. Our work has provided a new strategy for constructing green CHs with high ionic conductivities.
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