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Oxidation behaviour of lattice oxygen in Li-rich manganese-based layered oxide studied by hard X-ray photoelectron spectroscopy

机译:硬X射线光电子能谱研究富锂锰基层状氧化物中晶格氧的氧化行为

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摘要

The oxidation/reduction behaviours of lattice oxygen and transition metals in a Li-rich manganese-based layered oxide Li[Li0.25Ni0.20Mn0.55]O1.93 are investigated by using hard X-ray photoelectron spectroscopy (HAX-PES). By making use of its deeper probing depth rather than in-house XPS analyses, we clearly confirm the formation of O- ions as bulk oxygen species in the active material. They are formed on the 1st charging process as a charge compensation mechanism for delithiation and decrease on discharging. In particular, the cation-anion dual charge compensation involving Ni and O ions is suggested during the voltage slope region of the charging process. The Ni ions in the material are considered to increase the capacity delivered by a reversible anion redox reaction with the suppression of O2 gas release. On the other hand, we found structural deterioration in the cycled material. The O- species are still observed but are electrochemically inactive during the 5th charge-discharge cycle. Also, the oxidation state of Ni ions is divalent and inactive, although that of Mn ions changes reversibly. We believe that this is associated with the structural rearrangement occurring after the activation process during the 1st charging, leading to the formation of spinel- or rocksalt-like domains over the sub-surface region of the particles.
机译:利用硬X射线光电子能谱(HAX-PES)研究了富锂锰基层状氧化物Li [Li0.25Ni0.20Mn0.55] O1.93中晶格氧和过渡金属的氧化/还原行为。通过使用更深的探测深度而不是内部XPS分析,我们清楚地确认了活性物质中O-离子作为大体积氧物种的形成。它们在第一个充电过程中形成,作为电荷补偿机制,以防止脱锂并减少放电。特别地,建议在充电过程的电压斜率区域中涉及Ni和O离子的阳离子-阴离子双电荷补偿。该材料中的Ni离子被认为可以增加可逆阴离子氧化还原反应传递的容量,同时抑制O2气体的释放。另一方面,我们发现循环材料的结构恶化。仍观察到O-物种,但在第5次充放电循环中电化学上无活性。而且,尽管Mn离子的氧化态可逆地变化,但是Ni离子的氧化态是二价且不活泼的。我们相信,这与在第一次充电期间的活化过程之后发生的结构重排有关,导致在颗粒的亚表面区域上形成尖晶石或岩盐样畴。

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