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Electrochemical kinetics of nanostructure LiFePO4/graphitic carbon electrodes

机译:纳米结构LiFePO4 /石墨碳电极的电化学动力学

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摘要

Lithium cation insertion/deinsertion reaction kinetics in a LiFePO4 (LFP)/graphitic carbon composite material were electrochemically studied with a cavity microelectrode (CME). The LFP/graphitic carbon composite has a core LFP (crystalline/amorphous)/graphitic carbon shell structure. In the crystalline and amorphous LFP phase, different reaction mechanisms were observed and characterized. While the reaction mechanism in the crystalline LFP phase is controlled by Li+ diffusion, the amorphous LFP phase shows a fast, surface-controlled, pseudocapacitive charge-storage mechanism. This pseudocapacitive behavior is extrinsic in origin since it comes from the presence of Fe3 + defects in the structure. These features explain the ultrafast performance of the material which offers interesting opportunities as a positive electrode for assembling high power and high energy hybrid supercapacitors.
机译:用腔体微电极(CME)对LiFePO4(LFP)/石墨碳复合材料中的锂阳离子插入/插入反应动力学进行了研究。 LFP /石墨碳复合物具有核心LFP(晶体/无定形)/石墨碳壳结构。在结晶和无定形的LFP相中,观察到并表征了不同的反应机理。虽然结晶LFP相的反应机理是通过Li +扩散来控制的,但非晶LFP相却表现出快速的,表面受控的伪电容电荷存储机理。这种假电容行为的起源是外部的,因为它来自结构中Fe3 +缺陷的存在。这些特征说明了该材料的超快性能,这为组装高功率和高能混合超级电容器的正极提供了有趣的机会。

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