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Influence of the solvent properties on the characteristics of a double layer capacitor

机译:溶剂性质对双层电容器特性的影响

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Electrochemical and electrical double layer characteristics for the phase boundary nanoporous carbon ∣1.0 M triethylmethylammonium tetrafluoroborate (TEMA) solution in acetonitrile (AN), γ-butyrolactone (GBL), acetone (DMK) and propylene carbonate (PC) have been studied using the cyclic voltammetry (CV) and the electrochemical impedance spectroscopy (EIS) methods. The constant current and constant power charge/discharge characteristics of capacitor modules constructed and filled with different electrolytes were tested over the temperature range from -30 to +60℃. Tests for "lifetime" of the capacitors were performed at elevated temperature. Energy density versus power density, i.e. so-called Ragone plots were constructed to characterize the performance of the capacitor modules. It was established that the energy density, power density, discharge time, etc. of the electrical double layer capacitors (EDLC) depend on the pore size distribution and conductivity of the nanoporous electrode material. It was shown that the energy output of capacitor depends on the viscosity and molar conductivity of a solvent. The power output of the capacitor increased in the order of solvent PC < DMK < GBL < AN in agreement with the dependence of the Ragone plot parameters on temperature.
机译:研究了相环纳米多孔碳∣1.0 M三乙基甲基四氟硼酸(TEMA)在乙腈(AN),γ-丁内酯(GBL),丙酮(DMK)和碳酸亚丙酯(PC)中的电化学和双电层特性伏安法(CV)和电化学阻抗谱(EIS)方法。在-30至+ 60℃的温度范围内,测试了构造并填充有不同电解质的电容器模块的恒流和恒功率充/放电特性。电容器的“寿命”测试是在高温下进行的。构造能量密度与功率密度的关系,即构造所谓的Ragone图以表征电容器模块的性能。已经确定,双电层电容器(EDLC)的能量密度,功率密度,放电时间等取决于纳米孔电极材料的孔径分布和电导率。结果表明,电容器的能量输出取决于溶剂的粘度和摩尔电导率。电容器的功率输出按照溶剂PC

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