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Effect of Transitional Metals (Mn and Ni) Substitution in LiCoPO4 Olivines

机译:LiCoPO4橄榄石中过渡金属(Mn和Ni)取代的影响

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摘要

Transition metal substitution is a key strategy to optimize the functional properties of advanced crystalline materials used as positive electrodes in secondary lithium batteries (LIBs). Here we investigate the structural alterations in the olivine lattice of Mn and Ni substituted LiCoPO phase and the impact on performance in LIBs. X-ray diffraction (XRD) and extended X-ray absorption experiments have been carried out in order to highlight the structural alterations induced by partial substitution of cobalt by manganese and nickel. XRD analysis suggests that substitution induces an expansion of the lattices and an increase of the antisite disorder between lithium and transition metal ions in the structure. XAS data highlight negligible electronic disorder but a relevant modulation in the local coordination around the different metal ions. Moreover, galvanostatic tests showed poor reversibility of the redox reaction compared to the pure LCP sample, and this failure is discussed in detail in view of the observed remarkable structural changes.
机译:过渡金属替代是优化用作二次锂电池(LIB)正极的先进晶体材料的功能特性的关键策略。在这里,我们研究了锰和镍取代的LiCoPO相的橄榄石晶格中的结构变化及其对LIBs性能的影响。为了突出由锰和镍部分取代钴引起的结构变化,已经进行了X射线衍射(XRD)和扩展X射线吸收实验。 XRD分析表明,取代引起结构中锂和过渡金属离子之间晶格的扩展和反位无序的增加。 XAS数据强调了可忽略的电子紊乱,但是围绕不同金属离子的局部配位具有相关的调制。此外,恒电流测试显示,与纯LCP样品相比,氧化还原反应的可逆性较差,鉴于观察到的显着结构变化,对此失败进行了详细讨论。

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