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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Impedance Spectra of Nonhomogeneous, Multilayered Porous Composite Graphite Electrodes for Li-Ion Batteries: Experimental and Theoretical Studies
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Impedance Spectra of Nonhomogeneous, Multilayered Porous Composite Graphite Electrodes for Li-Ion Batteries: Experimental and Theoretical Studies

机译:锂离子电池非均质多层多孔复合石墨电极的阻抗谱:实验和理论研究

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摘要

The first lithium-ion insertion and extraction processes of a graphite electrode at different potentials were studied by electrochemical impedance spectroscopy (EIS). The results revealed that, below the potential of 0.65 V during the first lithiation, three semicircles were observed in the Nyquist plotsj namely, two semicircles appeared in the middle-frequency region. This new phenomenon has been investigated through the detailed analysis of the change of kinetic parameters obtained from simulating the experimental EIS data for lithiumion insertion and extraction in graphite as a function of potential. It has been found that the two semicircles in the middle-frequency region were strongly potential-dependent, and they were both attributed to the charge-transfer process. Evidence was presented (supported by model calculation) that the two semicircles observed in the middle-frequency region originated from the nonhomogeneous, multilayered porous microstructure of the graphite electrode, which resulted from a parallel combination of impedance response of the thinner parts and thicker parts of the electrode.
机译:通过电化学阻抗谱(EIS)研究了石墨电极在不同电势下的首次锂离子插入和萃取过程。结果表明,在第一次锂化期间低于0.65 V的电势,在奈奎斯特图中观察到三个半圆形,即在中频区域出现两个半圆形。通过对动力学参数变化的详细分析,对这种新现象进行了研究,该动力学参数是通过模拟实验性EIS数据模拟的锂离子在石墨中插入和萃取的电势函数而获得的。已经发现,在中频区域中的两个半圆与电位密切相关,并且它们都归因于电荷转移过程。提出的证据(得到模型计算的支持)表明,在中频区域观察到的两个半圆起因于石墨电极较薄部分和较厚部分的阻抗响应的平行组合,是石墨电极的非均质多层多孔微结构。电极。

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