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Structural Impedance and Electrochemical Characteristics of Electrical Double Layer Capacitor Devices Based on Chitosan: Dextran Biopolymer Blend Electrolytes

机译:基于壳聚糖:葡聚糖生物聚合物共混电解质的双层电容器的结构阻抗和电化学特性

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摘要

This report presents the preparation and characterizations of solid biopolymer blend electrolyte films of chitosan as cationic polysaccharide and anionic dextran (CS: Dextran) doped with ammonium iodide (NH I) to be utilized as electrolyte and electrode separator in electrical double-layer capacitor (EDLC) devices. FTIR and XRD techniques were used to study the structural behavior of the films. From the FTIR band analysis, shifting and broadening of the bands were observed with increasing salt concentration. The XRD analysis indicates amorphousness of the blended electrolyte samples whereby the peaks underwent broadening. The analysis of the impedance spectra emphasized that incorporation of 40 wt.% of NH I salt into polymer electrolyte exhibited a relatively high conductivity (5.16 × 10 S/cm). The transference number measurement (TNM) confirmed that ion (t = 0.928) is the main charge carriers in the conduction process. The linear sweep voltammetry (LSV) revealed the extent of durability of the relatively high conducting film which was 1.8 V. The mechanism of charge storage within the fabricated EDLC has been explained to be fully capacitive behavior with no redox peaks appearance in the cyclic voltammogram (CV). From this findings, four important parameters of the EDLC; specific capacitance, equivalent series resistance, energy density and power density were calculated as 67.5 F/g, 160 ohm, 7.59 Wh/kg and 520.8 W/kg, respectively.
机译:本报告介绍了壳聚糖作为阳离子多糖和掺有碘化铵(NH I)的阴离子葡聚糖(CS:Dextran)的固体生物聚合物共混电解质膜的制备和表征,可将其用作双电层电容器(EDLC)中的电解质和电极隔板) 设备。 FTIR和XRD技术用于研究薄膜的结构行为。根据FTIR谱带分析,观察到随着盐浓度的增加,谱带发生移动和变宽。 XRD分析表明混合的电解质样品的非晶性,由此峰变宽。阻抗谱的分析强调,将40wt。%的NH I盐掺入聚合物电解质中表现出相对较高的电导率(5.16×10 S / cm)。迁移数测量(TNM)证实离子(t = 0.928)是导电过程中的主要电荷载流子。线性扫描伏安法(LSV)揭示了相对较高的导电膜的持久性程度,为1.8 V.在制造的EDLC中,电荷存储的机理已被解释为完全电容行为,在循环伏安图中未出现氧化还原峰(简历)。从这个发现,EDLC的四个重要参数;比电容,等效串联电阻,能量密度和功率密度分别计算为67.5 F / g,160 ohm,7.59 Wh / kg和520.8 W / kg。

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