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Fabrication of high performance energy storage EDLC device from proton conducting methylcellulose: dextran polymer blend electrolytes

机译:来自质子传导甲基纤维素的高性能储能EDLC装置的制备:葡聚糖聚合物混合电解质

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This paper reports Methylcellulose:Dextran (MC:Dex) polymer blend based electrolyte system with NH4I salt for electrical double layer capacitor (EDLC) application. The structural and electrochemical properties of the electrolyte systems were investigated using X-ray diffraction (XRD), Fourier transformed infra-red (FTIR) spectroscopy, Field emission scanning electron microscope (FESEM), impedance spectroscopy, transference number measurement (TNM) and linear sweep voltammetry (LSV). The FTIR studies revealed the complexation between MC:Dex polymer blend and NH4I salt. The reduction in the crystallinity of MC:Dex polymer blend with the increasing salt concentration was observed in XRD analysis. The electrolyte system was observed to be predominantly ionic in nature. The electrolyte composition with 40?wt.% of NH4I showed the maximum ionic conductivity as 1.12?×?10?3S/cm with electrochemical stability window of 1.27?V. The highest conducting composition of the electrolyte system was used to prepare EDLC with activated carbon electrodes. The EDLC exhibited initial specific capacitance as 79?F/g, energy density as 8.81?Wh/kg and power density as 1111.1?W/kg at a current density of 0.2?mA/cm2.
机译:本文报道了甲基纤维素:葡聚糖(MC:DEX)基于NH4I盐的电解质混合物,用于电双层电容器(EDLC)应用。使用X射线衍射(XRD),傅里叶转化的红外线(FTIR)光谱,场发射扫描电子显微镜(FeSEM),阻抗光谱,转移数测量(TNM)和线性,研究了电解质系统的结构和电化学性质。扫伏伏安法(LSV)。 FTIR研究表明MC:DEX聚合物共混物和NH 4 I盐之间的络合。在XRD分析中观察到MC:Dex聚合物共混物随着盐浓度的增加,在XRD分析中观察。观察到电解质系统在自然界中主要是离子。电解质组合物为40〜wt。NH4i的%,显示最大离子电导率为1.12Ω·×10?3S / cm,电化学稳定性窗口为1.27Ωv。使用电解质系统的最高导电组合物用活性炭电极制备EDLC。 EDLC表现为79〜F / g,能量密度为8.81Ω·wh / kg和电力密度为1111.1〜kg,电流密度为0.2Ωma/ cm2。

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