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Complex capacitance analysis on rate capability of electric-double layer capacitor (EDLC) electrodes of different thickness

机译:不同厚度双电层电容器电极速率能力的复电容分析

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摘要

The complex capacitance analysis is utilized to examine the thickness-dependent rate capability of electric double-layer capacitor (EDLC) electrodes. Based on the transmission line model, the theoretical imaginary capacitance is derived for porous carbon electrodes, where the resistance relevant to ion transport in pores of carbon particles (intra-particle pores) and within electrode layer (inter-particle pores) is assumed to be the major component for equivalent series resistance (ESR). The use of hexagonal mesoporous carbon (HMC) as the EDLC electrode material, which has a well-defined pore structure, allows us to estimate the number of intra-particle pores in the composite electrodes such that the two resistance components are separately analyzed as a function of electrode thickness. As the theoretical derivation suggests, the time constant for intra-particle pores is invariant against the electrode thickness, whereas the time constant for inter-particle pores becomes larger for thicker electrodes. The poorer rate capability observed in the thicker electrodes is thus ascribed to a larger time constant for inter-particle pores.
机译:复电容分析用于检查双电层电容器(EDLC)电极的厚度随速率变化的能力。基于传输线模型,推导了多孔碳电极的理论虚电容,其中假定与碳颗粒的孔(颗粒内的孔)和电极层内(颗粒间的孔)中的离子迁移有关的电阻为等效串联电阻(ESR)的主要成分。使用具有良好孔结构的六方晶介孔碳(HMC)作为EDLC电极材料,使我们能够估算复合电极中颗粒内孔的数量,以便将两个电阻分量分别分析为电极厚度的函数。如理论推导所示,颗粒内孔的时间常数相对于电极厚度是不变的,而颗粒间孔的时间常数对于较厚的电极而言变大。因此,在较厚的电极中观察到的较差的速率能力归因于颗粒间孔的较大时间常数。

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