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The Improvement of Discharge Capacity of Zr-doped Lithium Titanate for Lithium Ion Batteries

机译:掺锆钛酸锂对锂离子电池放电容量的提高

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Li4Ti5?xZrxO12 (0 ? x ? 0.05) materials are synthesized via one-step liquid method in this work. The morphology, elemental distribution and lithium storage performance of Zr-doped lithium titanate are systematic analyzed by field emitting scanning electron microscopy (FE-SEM, Hitachi S-4800), energy dispersive X-ray (EDS) and Land battery test system (LAND CT2001A) together with the pristine lithium titanate for comparison. The FE-SEM images show the uniform morphology and narrow particle size distribution of Zr-doped samples. The cycle performance measurements demonstrate that the Li4Ti4.97Zr0.03O12 electrode displays the best discharge capacities among the composites. It delivers the initial discharge capacities of 165.4 mAh/g and 152.9 mAh/g at 5C and 10C, and remains the values of 142.9 mAh/g and 127.4 mAh/g after 200 cycles. Furthermore, the charge and discharge curves exhibit that the Zr-doped composite presents smaller polarization than the pristine lithium titanate.
机译:这项工作中,Li4Ti5?xZrxO12(0?x?0.05)材料是通过一步液相法合成的。通过场发射扫描电子显微镜(FE-SEM,日立S-4800),能量色散X射线(EDS)和陆地电池测试系统(LAND),系统分析了Zr掺杂钛酸锂的形貌,元素分布和锂存储性能。 CT2001A)与原始钛酸锂进行比较。 FE-SEM图像显示了掺Zr样品的均匀形态和窄粒度分布。循环性能测试表明,Li4Ti4.97Zr0.03O12电极在复合材料中显示出最佳的放电容量。它在5C和10C时的初始放电容量为165.4 mAh / g和152.9 mAh / g,在200个循环后仍保持142.9 mAh / g和127.4 mAh / g的值。此外,充电和放电曲线表明,掺杂Zr的复合材料呈现出比原始钛酸锂更小的极化。

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