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A review on the solid-state ionics of electrochemical intercalation processes: How to interpret properly their electrochemical response

机译:电化学嵌入过程固态离子性的综述:如何正确解释其电化学反应

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In this paper, we discuss the electrochemical response of three types of insertion electrodes: graphite and transition metal oxides that intercalate reversibly with lithium, electronically-conducting polymers with red-ox activity that can be doped reversibly, both positively and negatively (i.e., at high and low potentials), and Chevrel phases with Mo-S-Se elements, which intercalate reversibly with both lithium and magnesium. The main point of interest is the correlation among electrochemical kinetics, impedance, surface chemistry, 3D structure, and morphology of these systems, studied by the use of electroanalytical tools in conjunction with XRD, microscopy and spectroscopy. Magnesium insertion into Chevrel phases and Li insertion into most of the electrodes relevant to Li batteries involves phase transition. Thereby, the electrodes' kinetics are affected by interfacial charge transfer processes, solid-state diffusion, and the moving of boundaries between phases. The electrochemical response of the electrodes reflects all these processes. However, the identification of the relevant time constants that affect the measured electrochemical behavior is not trivial. Efforts are made in this paper to provide comprehensive guidelines regarding the proper use of fine electrochemical tools for the study of various types of insertion electrodes.
机译:在本文中,我们讨论了三种类型的插入电极的电化学响应:石墨和过渡金属氧化物,其与锂嵌入的锂,电子传导聚合物具有可逆地和负面掺杂的红牛活性(即,在高电位和低电位)和具有MO-S SE元件的螺旋阶段,其与锂和镁反转嵌入。主要的兴趣点是通过使用电化学工具与XRD,显微镜和光谱分辨出来的电化学动力学,阻抗,表面化学,3D结构和形态学的相关性。镁插入骨架阶段和LI插入与LI电池相关的大多数电极涉及相变。因此,电极的动力学受界面电荷转移过程,固态扩散和相位之间的边界的影响。电极的电化学响应反映了所有这些过程。然而,鉴定影响测量电化学行为的相关时间常数并不差。本文提出努力,提供有关适当使用精细电化学工具的全面准则,用于研究各种类型的插入电极。

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