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首页> 外文期刊>RSC Advances >A chemically bonded supercapacitor using a highly stretchable and adhesive gel polymer electrolyte based on an ionic liquid and epoxy-triblock diamine network
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A chemically bonded supercapacitor using a highly stretchable and adhesive gel polymer electrolyte based on an ionic liquid and epoxy-triblock diamine network

机译:基于离子液体和环氧树脂 - Triblock二胺网络的高伸缩和粘合剂聚合物电解质的化学键合超级电解器

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摘要

Despite significant advances in the development of flexible gel polymer electrolytes (GPEs), there are still problems to be addressed to apply them to flexible electric double layer capacitors (EDLCs), including interfacial interactions between the electrolyte and electrode under deformation. Previously reported EDLCs using GPEs have laminated structures with weak interfacial interactions between the electrode and electrolyte, leading to fragility upon elongation and low power density due to lower utilization of the surface area of the carbon material in the electrode. To overcome these problems, we present a new strategy for constructing an epoxy-based GPE that can provide strong adhesion between electrode and electrolyte. The GPE is synthesized by polymerization of epoxy and an ionic liquid. This GPE shows high flexibility up to 509% and excellent adhesive properties that enable strong chemical bonding between the electrode and electrolyte. Moreover, the GPE is stable at high voltage and high temperature with high ionic conductivity of similar to 10(-3) S cm(-1). EDLCs based on the developed GPE exhibit good compatibility between the electrode and electrolyte and work properly when deformed. The EDLCs also show a high specific capacitance of 99 F g(-1), energy density of 113 W h kg(-1), and power density of 4.5 kW g(-1). The excellent performance of the GPE gives it tremendous potential for use in next generation electronic devices such as wearable devices.
机译:尽管在柔性凝胶聚合物电解质(GPE)的发展方面存在显着进展,但仍有问题需要解决,以将它们应用于柔性的双层电容器(EDLC),包括在变形下电解质和电极之间的界面相互作用。先前报告的使用GPE的EDLC具有层压结构,电极和电解质之间的界面相互作用较弱,导致电极中碳材料的表面积的利用率较低,导致伸长率和低功率密度。为了克服这些问题,我们提出了一种构建基于环氧基的GPE的新策略,其可以在电极和电解质之间提供强粘附。通过环氧树脂和离子液体聚合合成GPE。该GPE显示出高达509%的高柔韧性,优异的粘合性能,使电极和电解质之间能够强化化学键合。此外,GPE在高电压和高温下稳定,具有与10(-3)厘米(-1)相似的高离子电导率。基于开发的GPE的EDLCS在电极和电解质之间表现出良好的相容性,并且在变形时正常工作。 EDLC还显示出99V(-1)的高比电容,113WH kg(-1)的能量密度,电力密度为4.5kw g(-1)。 GPE的优异性能使其在诸如可穿戴设备的下一代电子设备中使用的巨大潜力。

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  • 来源
    《RSC Advances》 |2020年第32期|共8页
  • 作者单位

    Pusan Natl Univ Dept Mat Sci &

    Engn Busan 46241 South Korea;

    Korea Inst Mat Sci KIMS Funct Composite Dept Chang Won 51508 South Korea;

    Korea Inst Mat Sci KIMS Funct Composite Dept Chang Won 51508 South Korea;

    Korea Inst Mat Sci KIMS Funct Composite Dept Chang Won 51508 South Korea;

    Pusan Natl Univ Dept Mat Sci &

    Engn Busan 46241 South Korea;

    Korea Inst Mat Sci KIMS Funct Composite Dept Chang Won 51508 South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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