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Important parameters affecting the cell voltage of aqueous electrical double-layer capacitors
Journal article   Peer reviewed

Important parameters affecting the cell voltage of aqueous electrical double-layer capacitors

Tzu-Ho Wu, Chun-Tsung Hsu, Chi-Chang Hu and Laurence J. Hardwick
Journal of Power Sources, Vol.242, pp.289-298
2013

Abstract

Activated carbon Charge balance Electrical double-layer capacitor Electrochemical impedance spectroscopy Inductance-capacitance-resistance meter
This study discusses and demonstrates how the open-circuit potential and charges stored in the working potential window on positive and negative electrodes affect the cell voltage of carbon-based electrical double-layer capacitors (EDLCs) in aqueous electrolytes. An EDLC consisting of two activated carbon electrodes is employed as the model system for identifying these key parameters although the potential window of water decomposition can be simply determined by voltammetric methods. First, the capacitive performances of an EDLC with the same charge on positive and negative electrodes are evaluated by cyclic voltammetric, charge-discharge, electrochemical impedance spectroscopic (EIS) analyses, and inductance-capacitance-resistance meter (LCR meter). The principles for obtaining the highest acceptable cell voltage of such symmetric ECs with excellent reversibility and capacitor-like behaviour are proposed. Aqueous charge-balanced EDLCs can be operated as high as 2.0 V with high energy efficiency (about 90%) and only 4% capacitance loss after the 600-cycle stability checking. The necessity of charge balance (but not capacitance balance) for positive and negative electrodes is substantiated from the lower acceptable cell voltage of charge-unbalanced EDLCs. © 2013 Elsevier B.V. All rights reserved.

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