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Synthesis and properties of gallium-doped LiNiO2 as the cathode material for lithium secondary batteries

机译:镓掺杂LiNiO2作为锂二次电池正极材料的合成及性能

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摘要

Gallium-doping to LiNiO_2 was investigated, and we found that it is effective to improve the cycling behavior of LiNiO_2. The obtained specimen is single phase with hexagonal structure without any other foreign matters such as LiGaO_2 by X-ray diffraction measurement. The crystal structure during charging process is stabilized by gallium doping. Hexagonal structure is retained all over the charging state without m0noclinic phase and without two hexagonal phase regions which are observed in undoped LiNiO_2. Consequently, the crystal lattice parameters change continuously and gradually. The gallium-doped LiNiO_2 shows superior rechargeable capacity of 190 mAh/g and retention of more than 95% after 100 cycles in the cycling test between 3.0 and 4.3 V at room temperature. In the cycling test with higher charging voltage (4.4 or 4.5 V), the rechargeable capacity reaches more than 200 mAh/g without significant degradation of cycling behavior. It also demonstrates excellent over-charge resistance.
机译:研究了镓对LiNiO_2的掺杂,发现它对改善LiNiO_2的循环行为有效。通过X射线衍射测量,所获得的样品是具有六边形结构的单相,没有任何其他异物,例如LiGaO_2。镓掺杂可以使充电过程中的晶体结构稳定。六方结构在整个充电状态下均保持不变,没有单斜晶相和没有在未掺杂的LiNiO_2中观察到的两个六方相区域。因此,晶格参数连续且逐渐变化。掺杂镓的LiNiO_2在室温下在3.0至4.3 V之间的循环测试中进行100个循环后,显示出190 mAh / g的出色可充电容量和95%以上的保留率。在具有较高充电电压(4.4或4.5 V)的循环测试中,可充电容量达到200 mAh / g以上,而循环性能没有明显下降。它还具有出色的抗过充电性。

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