尖晶石
材料科学
扩展X射线吸收精细结构
锂(药物)
阴极
离子
氧化锂
分析化学(期刊)
化学
物理化学
电化学
磷酸钒锂电池
电极
吸收光谱法
冶金
物理
有机化学
内分泌学
医学
量子力学
色谱法
作者
Jaesang Yoon,Donghwi Kim,Ji Hyun Um,Mihee Jeong,Woong Oh,Won‐Sub Yoon
标识
DOI:10.1016/j.jallcom.2016.06.044
摘要
High voltage spinel LiNi0.5Mn1.5O4 is a promising cathode material for the practical application in high energy density lithium ion batteries. With a simple strategy of cooling rate, the degree of ordering in disordered spinel LiNi0.5Mn1.5O4−δ structure is controlled at 0.5 °C min−1 for slow-cooled spinel and at 5 °C min−1 for fast-cooled spinel. From XRD and FTIR analyses and charge/discharge profiles, it is confirmed that the fast-cooled spinel develops more disordered structure than the slow-cooled spinel, retaining more oxygen vacancies and more abundant Mn3+. By using in situ XRD analysis, the more disordered spinel follows the extended solid-solution reaction in favor of Li+ transport, which results in an improved rate capability. Moreover, through ex situ XAS analysis and the more quantitative results from EXAFS fitting, the local structural changes in the vicinity of Mn and Ni cations are investigated at various C-rates and smaller structural distortion in more disordered spinel is proposed to enhance the rate capability.
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