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Controlled synthesis of LiNi0.5Mn1.5O4 cathode materials with superior electrochemical performance through urea-based solution combustion synthesis

机译:尿素基溶液燃烧合成可控合成具有优异电化学性能的正极材料LiNi0.5Mn1.5O4

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摘要

High-voltage LiNi0.5Mn1.5O4 cathode materials were synthesized using urea-based solution combustion synthesis combined with a calcination treatment. The morphology and particle size distribution of the products were considerably dependent on the amount of urea fuel. The electrochemical characterization illustrated that the sample that was produced with a fuel ratio of phi = 0.5 had a homogenous particle size distribution of approximately 8 mu m, and showed the best cycling and rate performance. LiNi0.5Mn1.5O4 with two different structures of disordered Fd (3) over barm and ordered P4(3)32 were obtained by controlling the calcination process. The samples, which were calcined at 800 degrees C with fast cooling, presented a disordered structure of Fd (3) over barm, and the samples, which were calcined at 800 degrees C with slow cooling and reannealing at 600 degrees C, demonstrated an ordered structure of P4(3)32. The sample with a disordered structure exhibited a better electrochemical performance than the sample with an ordered structure. The disordered sample produced at phi = 0.5 presented a discharge capacity of 130.73 mA h g(-1) and a capacity retention of 98.43% after 100 cycles at 1 C. Even at a higher current rate of 3 C, the sample still showed a high discharge capacity of 117.79 mA h g(-1) and a capacity retention efficiency of 97.63% after 300 cycles.
机译:采用基于尿素的固溶燃烧合成法和煅烧处理法合成了高压LiNi0.5Mn1.5O4正极材料。产品的形态和粒度分布在很大程度上取决于尿素燃料的量。电化学特征表明,燃料比为phi = 0.5的样品具有约8μm的均匀粒径分布,并显示出最佳的循环和速率性能。通过控制煅烧过程获得了具有两种不同结构的Bard上无序Fd(3)和有序P4(3)32的LiNi0.5Mn1.5O4。在800摄氏度快速冷却下煅烧的样品呈现出Fd(3)的无序结构,并且在800摄氏度缓慢冷却并在600摄氏度下重新退火的样品表现出有序的P4(3)32的结构。具有无序结构的样品表现出比具有有序结构的样品更好的电化学性能。在phi = 0.5时产生的无序样品在1 C循环100次后表现出130.73 mA hg(-1)的放电容量和98.43%的容量保持率。即使在3 C的更高电流速率下,样品仍显示出高300次循环后的最大放电容量为117.79 mA hg(-1),容量保持效率为97.63%。

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