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Tuning Sodium Occupancy Sites in P2-Layered Cathode Material for Enhancing Electrochemical Performance

机译:调节P2层阴极材料中的钠占用位点,用于提高电化学性能

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摘要

Different sodium occupancy sites in P2-layered cathode materials can reorganize Na-ion distribution and modify the Na+/vacancy superstructure, which have a vital impact on the Na-ion transport and Na storage behavior during charge and discharge processes, but have not been investigated specifically and are not yet well understood. Herein, the occupancy ratio of two different Na sites (sites below transition metal ions and sites below oxygen ions along the c direction) in P2-Na-0.67[Mn0.66Ni0.33]O-2 cathode is tuned successfully by inducing Sb5+ ions with strong repulsion toward Na sites right below transition metals. It is found that the decrease of Na occupancy right below transition metal ions is beneficial to the electrochemical performance of P2-layered cathode materials, regarding cycle stability and rate capability. In situ X-ray absorption spectroscopy reveals that the reversible Mn3.3+/Mn4+ and Ni2+/Ni3+ redox couples provide charge compensation in different voltage regions of 1.8-2.3 and 2.3-4.2 V, respectively. The transmission X-ray microscopy confirms the uniform redox reaction over the whole electrode particle. In addition, Sb substitution can suppress the "P2-O2" phase transition in high voltage region by preventing oxygen gliding in a-b planes, thus ensuring robust structure stability during cycling.
机译:P2层阴极材料中的不同钠占用位点可以重新组织Na离子分布并改变Na + /空位上层建筑,这对充电和放电过程中的Na离子输送和Na储存行为具有重要影响,但尚未被研究具体而且还没有很好地理解。这里,通过诱导SB5 +离子成功地通过诱导SB5 +离子在P2-Na-0.67 [MN0.66NI0.33] O-2阴极中进行两种不同NA位点(低于氧离子低于氧离子低于氧离子低于C方向的位点)的占用率。强烈排斥在过渡金属下方的NA遗址。结果发现,低于过渡金属离子的Na占用率的降低是有益于P2层阴极材料的电化学性能,关于循环稳定性和速率能力。原位X射线吸收光谱显示可逆MN3.3 + / MN4 +和Ni2 + / Ni3 +氧化还原耦合分别为1.8-2.3和2.3-4.2V的不同电压区域提供电荷补偿。变速器X射线显微镜检查证实整个电极颗粒上的均匀氧化还原反应。另外,通过防止在A-B平面中的氧气滑动,Sb取代可以抑制高压区域中的“P2-O2”相变,从而确保循环期间的稳健结构稳定性。

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