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Electrochemical performance of LBO-coated spinel lithium manganese oxide as cathode material for Li-ion battery

机译:Lbo涂层尖晶石锂锰氧化物作为锂离子电池的阴极材料的电化学性能

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Surface treatment of the lithium manganese oxide cathode material coated by lithium borate glass (Li2O–2B2O3) with improved electrochemical cyclability and structural stability was conducted in this study. The lithium manganese oxide powder doped with various weight percentages of LBO glass was calcined to form a fine powder with single spinel phase, exhibiting different particle size, size distribution and morphology. The surface area decreased with the content of the LBO glass. The average particle size was in the range of 3–8 Am. Cyclic charge/discharge testing of the coin cells, fabricated by lithium manganese oxide and 0.4 wt.% LBO-coated lithium manganese oxide as cathode material, provided the initial discharge capacity of 95.57 and 119.79 mAh/g, respectively. Furthermore, the 0.4 wt.% LBOcoated lithium manganese oxide powder retained 93% of its original capacity after 10 cycles, showing much better cyclability than the uncoated lithium manganese oxide. It is demonstrated that the LBO-coated lithium manganese oxide cathode material exhibited high discharge capacity and the fading rate was evidently decreased after cyclic test.
机译:本研究进行了锂硼酸锂玻璃(Li2O-2B2O3)涂覆的锂锰氧化物阴极材料的表面处理和结构稳定性。掺杂有各种重量百分比的LBO玻璃锂锰氧化物粉末以形成具有单眼丝相的细粉,表现出不同的粒度,尺寸分布和形态。表面积随LBO玻璃的含量降低。平均粒度在3-8 am的范围内。通过锂锰氧化物和0.4重量%的锰氧化物制造的硬币电荷/放电试验分别为阴极材料的0.4重催化锂锰氧化物。分别为95.57和119.79mAh / g的初始放电容量。此外,0.4重量%。%Lbocoated锂锰氧化物粉末在10个循环后保留了93%的原始容量,显示出比未涂覆的锂锰氧化物更好的可循环性。证明LBO涂覆的锂锰氧化物阴极材料表现出高放电容量,并且在环状试验后显着降低了衰落速率。

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