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Toward a stabilized lattice framework and surface structure of layered lithium-rich cathode materials with Ti modification

机译:钛改性层状富锂正极材料的稳定晶格骨架和表面结构

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摘要

Layered lithium-rich oxides have several serious shortcomings such as fast voltage fading and poor cyclic stability of energy density which greatly hinder their practical applications. Fabrication of a stable framework of layered lithium-rich oxides during charging-discharging is crucial for addressing the above problems. In this work, we show that Ti modification is a promising way to realize this target with bifunctional roles. For example, it is able to substitute Mn in the lattice framework and form a stable surface layer. It therefore leads to an improved retention of energy density of the Ti-modified Li1.2Mn0.54-xTixNi0.13Co0.13O2 (x = 0.04, 0.08, and 0.15) materials during cycling. The evolution of dQ/dV curves show that the layered/spinel phase transformation is suppressed owing to the introduction of strong Ti-O bonds in the framework. In addition, SEM, TEM, and EIS results confirm that a more uniform and stable interface layer is formed on Ti-modified Li1.2Mn0.54-xTixNi0.13Co0.13O2 (x = 0.04, 0.08, and 0.15) materials compared with the Ti-free counterpart. The stable interface layer on the lithium-rich oxides is also beneficial for further reducing side reactions, resulting in stable interface layer resistance. Therefore, the improved cycling performance of the material is due to both contribution of the more stable framework and enhanced electrode/electrolyte interface by Ti modification.
机译:层状富锂氧化物具有严重的缺点,例如快速的电压衰减和能量密度的循环稳定性差,这极大地阻碍了它们的实际应用。在充放电过程中,层状富锂氧化物的稳定骨架的制造对于解决上述问题至关重要。在这项工作中,我们表明Ti修饰是实现具有双功能角色的目标的一种有前途的方法。例如,它能够在晶格骨架中取代Mn并形成稳定的表面层。因此,在循环过程中,这会改善Ti改性的Li1.2Mn0.54-xTixNi0.13Co0.13O2(x = 0.04、0.08和0.15)材料的能量密度保留。 dQ / dV曲线的演变表明,由于在框架中引入了牢固的Ti-O键,层状/尖晶石相变得到了抑制。此外,SEM,TEM和EIS结果证实与Ti相比,Ti改性Li1.2Mn0.54-xTixNi0.13Co0.13O2(x = 0.04、0.08和0.15)材料上形成了更加均匀和稳定的界面层。无钛同行。富锂氧化物上的稳定界面层也有利于进一步减少副反应,从而获得稳定的界面层电阻。因此,材料的改善的循环性能归因于更稳定的骨架的贡献和通过Ti改性而增强的电极/电解质界面。

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