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Solid-State EDLC Device Based on Magnesium Ion-Conducting Biopolymer Composite Membrane Electrolytes: Impedance, Circuit Modeling, Dielectric Properties and Electrochemical Characteristics

机译:基于镁离子导电生物聚合物复合膜电解质的固态EDLC器件:阻抗,电路建模,电介质性能和电化学特性

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摘要

The polymer electrolyte based on Dx:Cs:Mg(CH3COO)2:Ni with three different glycerol concentrations have been prepared. The impedance study has verified that the electrolyte with 42 wt.% of glycerol (A3) has the highest ionic conductivity of 7.71 × 10−6 S cm−1 at room temperature. The ionic conductivity is found to be influenced by the transport parameters. From the dielectric analysis, it was shown that the electrolytes in this system obeyed the non-Debye behavior. The A3 electrolyte exhibited a dominancy of ions (tion > te) with a breakdown voltage of 2.08 V. The fabricated electrochemical double layer capacitor (EDLC) achieved the specific capacitance values of 24.46 F/g and 39.68 F/g via the cyclic voltammetry (CV) curve and the charge–discharge profile, respectively. The other significant parameters to evaluate the performance of EDLC have been determined, such as internal resistance (186.80 to 202.27 Ω) energy density (4.46 Wh/kg), power density (500.58 to 558.57 W/kg) and efficiency (92.88%).
机译:基于DX:Cs:Cs:Mg(CH 3 COO)2:Ni的聚合物电解质已经制备了具有三种不同甘油浓度的Ni。阻抗研究已经验证了具有42重量%的电解质。甘油(A3)的%在室温下具有7.71×10 -6 S cm-1的最高离子电导率。发现离子电导率受运输参数的影响。从介电分析中,显示该系统中的电解质遵循了非去德义行为。 A3电解质表现出离子(TiON> Te)的主导击穿电压为2.08V。制造的电化学双层电容器(EDLC)通过循环伏安法(以下)实现了24.46f / g和39.68f / g的特定电容值( CV)分别曲线和充电放电曲线。已经确定了评估EDLC性能的其他显着参数,例如内部电阻(186.80至202.27Ω)能密度(4.46WH / kg),功率密度(500.58至558.57W / kg)和效率(92.88%)。

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