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Enhancing the high rate performance of synergistic hybrid LiFePO4 center dot LiVPO4F/C cathode for lithium ion battery

机译:增强锂离子电池协同混合Livepo4中心点Livpo4F / C阴极的高速率性能

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摘要

The (1-x)LiFePO4 center dot LiVPO4F/C (x = 0, 0.05, 0.10, 0.20, 0.40, 0.60, 0.80, 1) composites with high rate perfor- mance were successfully prepared by an improved solid-phase method. Their physicochemical properties were characterized by different test instruments. Through X-ray Diffractometer and structural refinement, it was found that modification with certain amount of LiVPO4F on the LiFePO4 material induced bi-phase co-existence with mutual doping. By Scanning Electron Microscope and Transmission Electron Microscopy detection assisted with Energy Dispersion Spectrum and Fast Fourier Transform analysis, it can be confirmed that the composite material was evenly distributed. Sample 0.9LiFePO(4)center dot 0.1LiVPO(4)F/C had the highest specific capacity and specific energy in all samples, with its discharge capacity of 137.4, 129.0, 121.4, 109.6 and 94.0 mAh g(-1) at the rate of 3C, 5C, 7C, 10C and 15C, respectively. Furthermore, at the rate of 15C, the specific energy of 0.9LiFePO(4)center dot 0.1LiVPO(4)F/C was more than 2 times of that of sample LiFePO4/C. After 800 cycles at 10C, the capacity retention ratio still maintained at 91.42%. Compared with the untreated material, sample 0.9LiFePO(4)center dot 0.1LiVPO(4)F/C possessed smaller impedance and larger lithium diffusion coefficient, which is conducive to improve the electrochemical properties of LiFePO4 materials. It indicated that the heterogeneous double active phase shows good synergistic effect.
机译:通过改进的固相法成功地成功地制备了(1-x)LivePO4中心点LIVPO4F / C(x = 0,0.05,0.10,0.20,0.40,0.60,0.80,1)复合材料。它们的物理化学性质的特征在于不同的测试仪器。通过X射线衍射仪和结构细化,发现用相互掺杂的LiVepo4材料诱导的双相共存时用一定量的LiVPO4F进行修饰。通过扫描电子显微镜和透射电子显微镜检测辅助能量分散谱和快速傅里叶变换分析,可以确认复合材料均匀分布。样品0.9LifePO(4)中心点0.1LiVPO(4)F / C在所有样品中具有最高的特定容量和特定能量,其放电容量为137.4,129.0,121.4,109.6和94.0mahg(-1) 3C,5C,7C,10C和15C的速率分别。此外,在15℃的速率下,0.9LifePo(4)中心点0.1LiVPO(4)F / C的特定能量大于样品LiFePO4 / C的2倍以上。在10℃下800次循环后,容量保持比率仍保持在91.42%。与未处理的材料相比,样品0.9LivePO(4)中心点0.1LiVPO(4)F / C具有较小的阻抗和较大的锂扩散系数,这有利于改善LiFepo4材料的电化学性质。它表明,异质双活性相显示出良好的协同效应。

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