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Properties of lithium iron phosphate prepared by biomass-derived carbon coating for flexible lithium ion batteries

机译:用于柔性锂离子电池的生物质衍生碳涂层制备的磷酸铁磷酸盐的性能

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摘要

This study highlights the effects of a biomass-derived carbon coating on the properties of flexible lithium iron phosphate polymer batteries. Pure LiFePO4 (LFP) and carbon-coated LiFePO4 (C-LFP) cathode materials are synthesized by a modified mechanical activation process. LiFePO4 was uniformly coated with biomass-derived carbon by the addition of orange peel during the synthesis. C-LFP with a particle size of approximately 90 nm, having a homogeneous particle size distribution with particles smaller than that of pure LFP (140 nm), is obtained with 6.0 wt% carbon content. The electrochemical properties are evaluated at room temperature by cyclic voltammetry and charge-discharge performance analysis using porous carbon current collector with a lithium metal anode and gel polymer electrolyte that is prepared by the phase inversion method. C-LFP exhibits a high discharge capacity of 147.3 mAh g(-1) (corresponding to 87% of the theoretical capacity) at 0.5 C-rate and 139.8 mAh g(-1) at 1 C-rate. Good rate capability and stable cycle performance were realized for flexible lithium polymer cells employing the biomass derived-carbon coated LiFePO4. (C) 2019 Elsevier Ltd. All rights reserved.
机译:该研究突出了生物质衍生的碳涂层对柔性锂铁磷酸盐聚合物电池性能的影响。通过改性机械活化方法合成纯LiFePO4(LFP)和碳涂层的LiFePO4(C-LFP)阴极材料。通过在合成期间加入橙皮,将LiFePO4均匀地涂覆生物质衍生的碳。粒径为约90nm的C-LFP,具有小于纯LFP(140nm)的颗粒的均匀粒度分布,得到6.0wt%的碳含量。通过循环伏安法和电荷放电性能分析在室温下在室温下评估电化学性能,并使用多孔碳集电器与锂金属阳极和通过相位转化方法制备的凝胶聚合物电解质。 C-LFP在0.5c-ration的0.5c速率下呈现147.3mAhg(-1)(占理论能力的87%)的高放电容量,为1c速率为1 c速率为139.8mahg(-1)。实现了柔性锂聚合物电池的良好速率能力和稳定的循环性能,其采用生物质衍生的 - 碳涂覆的LiFePO4。 (c)2019 Elsevier Ltd.保留所有权利。

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