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Carboxylic acid-assisted solid-state synthesis of LiFePO4/C composites and their electrochemical properties as cathode materials for lithium-ion batteries

机译:羧酸辅助的LiFePO4 / C复合材料的固态合成及其作为锂离子电池正极材料的电化学性能

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To enhance the capability of LiFePO4 materials, we attempted to coat carbon by incorporating various organic carboxylic acids as carbon sources. The purity of LiFePO4 was confirmed by XRD analysis. Galvanostatic cycling, cyclic voltammetry, electric impedance spectroscopy, and conductivity measurements were used to evaluate the material's electrochemical performance. The best cell performance was delivered by the sample coated with 60 wt.% malonic acid. Its first-cycle discharge capacity was 149 mA h g(-1) stop at a 0.2 C rate or 155 mA h g(-1) stop at a 0.1 C rate. The presence of carbon in the composite was verified by total organic carbon and Raman spectral analysis. The actual carbon content of LiFePO4 was 1.90 wt.% with the addition of 60 wt.% malonic acid. The LiFePO4/C samples sintered with 60 wt.% various carboxylic acids were measured by Raman spectral analysis. The intense broad bands at 1,350 and 1,580 cm(-1) stop are assigned to the D and G bands of residual carbon in LiFePO4/C composites, respectively. The peak intensity (I-D/I-G) ratio of the synthesized powders is from 0.907 to 0.935. Carbon coatings of LiFePO4 with low I-D/I-G ratios can be produced by incorporating carboxylic acid additives before the final calcining process. The use of carboxylic acid as a carbon source increases the overall conductivity (similar to 10(-4) stop S cm(-1) stop) of the material.
机译:为了增强LiFePO4材料的能力,我们尝试通过加入各种有机羧酸作为碳源来涂覆碳。 LiFePO4的纯度通过XRD分析确认。恒电流循环,循环伏安法,电阻抗光谱法和电导率测量用于评估材料的电化学性能。最佳的电池性能是通过涂有60 wt。%丙二酸的样品实现的。它的第一周期放电容量是在0.2 C速率下停止149 mA h g(-1)或在0.1 C速率下停止155 mA h g(-1)。通过总有机碳和拉曼光谱分析验证了复合材料中碳的存在。加入60重量%的丙二酸,LiFePO 4的实际碳含量为1.90重量%。通过拉曼光谱分析测量了用60wt。%的各种羧酸烧结的LiFePO 4 / C样品。在1,350和1,580 cm(-1)处的强宽谱带分别分配给LiFePO4 / C复合材料中残余碳的D和G谱带。合成粉末的峰强度(I-D / I-G)比为0.907至0.935。具有低I-D / I-G比的LiFePO4碳涂层可以通过在最终煅烧过程之前加入羧酸添加剂来生产。使用羧酸作为碳源可增加材料的整体电导率(类似于10(-4)挡块S cm(-1)挡块)。

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