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Comparing Triflate and Hexafluorophosphate Anions of Ionic Liquids in Polymer Electrolytes for Supercapacitor Applications

机译:超级电容器应用中聚合物电解质中离子液体的三氟甲磺酸根和六氟磷酸根阴离子的比较

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Two different ionic liquid-based biopolymer electrolyte systems were prepared using a solution casting technique. Corn starch and lithium hexafluorophosphate (LiPF6) were employed as polymer and salt, respectively. Additionally, two different counteranions of ionic liquids, viz. 1-butyl-3-methylimidazolium hexafluorophosphate (BmImPF6) and 1-butyl-3-methylimidazolium trifluoromethanesulfonate (also known as 1-butyl-3-methylimidazolium triflate) (BmImTf) were used and studied in this present work. The maximum ionic conductivities of (1.47 ± 0.02) × 10−4 and (3.21 ± 0.01) × 10−4 S·cm−1 were achieved with adulteration of 50 wt% of BmImPF6 and 80 wt% of BmImTf, respectively at ambient temperature. Activated carbon-based electrodes were prepared and used in supercapacitor fabrication. Supercapacitors were then assembled using the most conducting polymer electrolyte from each system. The electrochemical properties of the supercapacitors were then analyzed. The supercapacitor containing the triflate-based biopolymer electrolyte depicted a higher specific capacitance with a wider electrochemical stability window compared to that of the hexafluorophosphate system.
机译:使用溶液流延技术制备了两种不同的基于离子液体的生物聚合物电解质体系。玉米淀粉和六氟磷酸锂(LiPF 6 )分别用作聚合物和盐。另外,两种不同的离子液体抗衡离子,即。使用并研究了六氟磷酸1-丁基-3-甲基咪唑鎓(BmImPF 6 )和三氟甲磺酸1-丁基-3-甲基咪唑鎓三氟甲磺酸盐(BmImTf)并进行了研究目前的工作。最大离子电导率为(1.47±0.02)×10 −4 和(3.21±0.01)×10 −4 S·cm -1 通过在环境温度下分别掺入50 wt%的BmImPF 6 和80 wt%的BmImTf来实现。制备了基于活性炭的电极,并将其用于超级电容器制造中。然后,使用每个系统中导电性最强的聚合物电解质组装超级电容器。然后分析了超级电容器的电化学性质。与六氟磷酸盐体系相比,含有三氟甲磺酸盐基生物聚合物电解质的超级电容器具有更高的比电容和更宽的电化学稳定性窗口。

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