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首页> 外文期刊>Electrochimica Acta >Application of Electrochemical Impedance Spectroscopy to Ferri/Ferrocyanide Redox Couple and Lithium Ion Battery Systems Using a Square Wave as Signal Input
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Application of Electrochemical Impedance Spectroscopy to Ferri/Ferrocyanide Redox Couple and Lithium Ion Battery Systems Using a Square Wave as Signal Input

机译:电化学阻抗谱在方波作为信号输入的亚铁/亚铁氧化还原对和锂离子电池系统中的应用

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摘要

To realize electrochemical impedance spectroscopy (EIS) using a simple measurement system, application of a square potential/current waveform to the input signals of EIS was investigated. The impedance of a simple redox reaction of [Fe(CN)(6)](4-)/[Fe(CN)(6)](3-) solution was measured by the potentio-EIS using a square waveform as the input signal, which was generated by a potentiostat system without a frequency response analyzer (FRA). A steady impedance response in the frequency range of 40 Hz-3.5 kHz was obtained, and the impedance was obtained by the potentiostat system with an FRA. The errors-the differences between the impedance measured by EIS with a square potential waveform and that of conventional EIS-were sufficiently low to allow impedance analysis. The impedance of a lithium-ion battery (LIB) was measured by galvano-EIS using a square waveform input signal generated by a power controller. A steady impedance response in the frequency range of 5 Hz-2.5 kHz was obtained, and the errors were sufficiently low to allow impedance analysis. It was demonstrated that both square potential-EIS (SP-EIS) and square current-EIS (SC-EIS) have great potential as simple systems for measuring impedance. Moreover, it was demonstrated that SC-EIS has potential as a simple measurement system for analyzing the state of an LIB. Thus, the potential of the SP/SC-EIS methodology was confirmed for electrochemical systems. (C) 2015 Published by Elsevier Ltd.
机译:为了使用简单的测量系统实现电化学阻抗谱(EIS),研究了方电位/电流波形对EIS输入信号的应用。 [Fe(CN)(6)](4-)/ [Fe(CN)(6)](3-)溶液的简单氧化还原反应的阻抗通过使用矩形波形作为输入的电位-EIS测量信号由恒电位仪系统在没有频率响应分析仪(FRA)的情况下产生。获得了在40 Hz-3.5 kHz频率范围内的稳定阻抗响应,并且通过具有FRA的恒电位仪系统获得了阻抗。误差(由具有方形电位波形的EIS测量的阻抗与常规EIS的阻抗之间的差)足够小,可以进行阻抗分析。锂离子电池(LIB)的阻抗使用电功率控制器产生的方波输入信号通过galvano-EIS测量。获得了在5 Hz-2.5 kHz频率范围内的稳定阻抗响应,并且误差足够低,可以进行阻抗分析。事实证明,作为简单的阻抗测量系统,平方电势EIS(SP-EIS)和平方电势EIS(SC-EIS)都具有很大的潜力。此外,已证明SC-EIS作为分析LIB状态的简单测量系统具有潜力。因此,证实了SP / SC-EIS方法在电化学系统中的潜力。 (C)2015由Elsevier Ltd.出版

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