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Synthesis, electrochemistry and First Principles Calculation studies of layered Li-Ni-Ti-O compounds

机译:层状Li-Ni-Ti-O化合物的合成,电化学和第一原理计算研究

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摘要

New layered cathode materials, Li₀.₉Ni₀.₄₅Ti₀.₅₅O₂, were synthesized by means of ion-exchange from Na₀.₉Ni₀.₄₅Ti₀.₅₅O₂. The degree of cation disordering in the material depends critically on the synthesis conditions. Longer times and higher temperatures in the ion-exchange process induced more cation disordering. However, the partially disordered phase showed better capacity retention than the least disordered phase. First principles calculations indicated this could be attributed to the migration of Ti⁺⁴ into the Li layer during the electrochemical testing, which seems to depend sensitively on the Ni⁺² -Ti⁺⁴ configuration in the transition metal layer. The poor conductivity of this material could also be the reason for its low specific capacity according to the Density of States (DOS) obtained from first principles calculations indicating that only Ni participates in the electronic conductivity.
机译:通过离子交换从Na 3·3 Ni 3·Ti 3·Ti 2·O 2合成了新的层状阴极材料Li 3·3Ni 3·Ti 3·O 2。材料中阳离子无序度严重取决于合成条件。离子交换过程中更长的时间和更高的温度会引起更多的阳离子混乱。但是,部分无序相显示出比最小无序相更好的容量保持能力。第一性原理计算表明,这可能归因于电化学测试过程中Ti +迁移到Li层中,这似乎敏感地取决于过渡金属层中Ni + 2 -Ti +的构型。根据从第一原理计算中获得的状态密度(DOS)得出的结果,该材料的导电性差也可能是其比容量低的原因,这表明只有Ni参与电子导电性。

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