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Graphene wrapped LiFePO4/C composites as cathode materials for Li-ion batteries with enhanced rate capability

机译:石墨烯包裹的LiFePO4 / C复合材料作为锂离子电池的正极材料,具有增强的倍率能力

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摘要

To reduce the reaction time, electrical energy consumption, and cost, LiFePCVC/graphene has been synthesized by a rapid, one-pot, microwave-assisted hydrothermal method within 15 min at a temperature of 200 °C, followed by sintering at 600 °C for 2 h under a H2/Ar (5 : 95, v/v) atmosphere. The microstructure and morphology of the LiFePCVC/graphene products were characterized by means of X-ray diffraction, Raman spectroscopy, field emission scanning electron microscopy, and transmission electron microscopy. The carbon coated LiFePCVC nanoparticles, around 200 nm in size, are thoroughly wrapped by crumpled micrometer-size graphene sheets. In this kind of structure, the bridging graphene nanosheets can form an effective conducting network and provide interconnected open pores that favor electrolyte absorption and reduce the diffusion path of the lithium ions. The cyclic voltammograms, charge/discharge profiles, and AC impedance measurements indicated that the kinetics of the LiFePO4/C/graphene was better than that of LiFePCVC. The LiFePCVC/graphene composite exhibited a discharge capacity of 165 mA h g~(-1) at 0.1 C and 88 mA h g~(-1) at 10 C, respectively. Therefore, the LiFePO4/C/graphene composite is a promising candidate for the development of high-performance, cost-effective lithium batteries for the hybrid vehicle and electric vehicle markets.
机译:为减少反应时间,减少电能消耗和降低成本,已通过快速单锅微波辅助水热法在200°C的温度下15分钟内合成LiFePCVC /石墨烯,然后在600°C的温度下烧结在H2 / Ar(5:95,v / v)气氛下放置2小时。通过X射线衍射,拉曼光谱,场发射扫描电子显微镜和透射电子显微镜对LiFePCVC /石墨烯产物的微观结构和形态进行了表征。约200 nm大小的碳涂层LiFePCVC纳米颗粒被皱缩的微米级石墨烯片完全包裹。在这种结构中,桥接的石墨烯纳米片可以形成有效的导电网络并提供相互连接的开孔,这些开孔有利于电解质的吸收并减少锂离子的扩散路径。循环伏安图,充电/放电曲线和交流阻抗测量结果表明,LiFePO4 / C /石墨烯的动力学优于LiFePCVC。 LiFePCVC /石墨烯复合材料在0.1 C时的放电容量分别为165 mA h g〜(-1),在10 C时的放电容量分别为88 mA h g〜(-1)。因此,LiFePO4 / C /石墨烯复合材料是开发用于混合动力汽车和电动汽车市场的高性能,高性价比锂电池的有前途的候选者。

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