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New Class of Ni-Rich Cathode Materials LiNixCoyB1?x?yO_2 for Next Lithium Batteries

机译:新型富镍正极材料LiNixCoyB1?x?yO_2用于下一代锂电池

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摘要

A new class of layered cathodes, LiNixCoyB1-x-yO-2 (NCB), is synthesized. The proposed NCB cathodes have a unique microstructure in which elongated primary particles are tightly packed into spherical secondary particles. The cathodes also exhibit a strong crystallographic texture in which the a-b layer planes are aligned along the radial direction, facilitating Li migration. The microstructure, which effectively suppresses the formation of microcracks, improves the cycling stability of the NCB cathodes. The NCB cathode with 1.5 mol B delivers a discharge capacity of 234 mAh g(-1) at 0.1 C and retains 91.2 of its initial capacity after 100 cycles (compared to values of 229 mAh g(-1) at 0.1 C and 78.8 for pristine LiNi0.9Co0.1O-2). This study shows the importance of controlling the microstructure to obtain the required cycling stability, especially for Ni-rich layered cathodes, where the main cause of capacity fading is related to mechanical strain in their charged state.
机译:合成了一类新型层状阴极Li[NixCoyB1-x-y]O-2 (NCB)。所提出的NCB阴极具有独特的微观结构,其中细长的初级颗粒紧密堆积在球形二级颗粒中。阴极还表现出很强的晶体学结构,其中a-b层平面沿径向排列,促进了Li迁移。该微观结构有效抑制了微裂纹的形成,提高了NCB正极的循环稳定性。具有1.5 mol% B的NCB阴极在0.1 C时提供234 mAh g(-1)的放电容量,并在100次循环后保持其初始容量的91.2%(相比之下,0.1 C时为229 mAh g(-1),原始Li[Ni0.9Co0.1]O-2为78.8%)。这项研究表明,控制微观结构以获得所需的循环稳定性非常重要,特别是对于富镍层状阴极,其中容量衰减的主要原因与其带电状态下的机械应变有关。

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