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On the Fletcher's two-terminal equivalent network of a three-terminal electrochemical cell

机译:在三末端电化学电池的弗莱彻的双端等效网络上

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摘要

The Fletcher's proposition [S. Fletcher, Electrochemistry Communications 3 (2001) 692-696] to represent a three-terminal electrochemical cell by its two-terminal electrical equivalent for the purpose of the analysis of its electrical responses helps significantly to elucidate peculiarities of the electrochemical impedance (EI) such as inductive or capacitive artifacts. The Fletcher's two-terminal equivalent cell of 3rd order appears however to be redundant as including more circuit elements then necessary to represent the 2nd order impedance of the electrochemical cell. As the alternative to this we recommend two equivalent circuits of 2nd order, both simpler then the original Fletcher's circuit and both better candidates to play the role of the canonical electrical model. Transformation from three-terminal to two-terminal circuit done here with Mathematica program appeared relatively simple and it was also possible to relax Fletcher's restraint of representing the working electrode by single resistance. Instead, we used two-terminal electrical models with the working electrode represented by series resistance, double layer capacitance and charge transfer resistance. EI spectra of such extended configuration also present capacitive and inductive artifacts referred to by Fletcher in his model. These artifacts do depend on the impedance of the working electrode.
机译:弗莱彻的命题[S. Fletcher,电化学通信3(2001)692-696]通过其双端电化学等当量表示三末端电化学电池,其电响应的分析有助于阐明电化学阻抗(EI)的特殊性作为电感或电容伪影。然而,第三顺序的荧光瓶的双端等效电池出现在冗余中,并且包括更多电路元件,然后需要表示电化学电池的第二阶阻抗。作为此替代方案,我们推荐两个等效电路的第二顺序,两者都更简单,然后是原始的弗拉德电路以及更好的候选人来发挥规范电气模型的作用。从三末端到两个终端电路的转换与Mathematica程序在这里似乎相对简单地出现,并且还可以通过单抗电阻放宽氟丝器的限制来表示工作电极。相反,我们使用了双端电模型,与串联电阻,双层电容和电荷电阻表示的工作电极。这种扩展配置的EI光谱还在其模型中呈现由Fletcher引用的电容和感应伪像。这些伪影确实取决于工作电极的阻抗。

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