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首页> 外文期刊>CERAMICS INTERNATIONAL >The role of a MnO2 functional layer on the surface of Ni-rich cathode materials: Towards enhanced chemical stability on exposure to air
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The role of a MnO2 functional layer on the surface of Ni-rich cathode materials: Towards enhanced chemical stability on exposure to air

机译:MnO2功能层在富含Ni的阴极材料表面上的作用:朝向暴露在空气中提高化学稳定性

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The severe degradation of Ni-rich cathode materials on exposure to air is a crucial restriction for their large-scale application. To overcome this issue, a MnO2 functional layer has been introduced to the surface of LiNi0.8Co0.15Al0.05O2 oxide via a wet-chemical method. Compared with pristine sample, the modified LiNi0.8Co0.15Al0.05O2 shows an enhanced chemical stability because of its low sensitivity to moisture and CO2. The formation of absorbed Li2CO3/LiOH species and spontaneous reduction of Ni3+ to Ni2+ on the surface of MnO2-modified sample have been delayed remarkably, which is confirmed by characterizations of SEM, TEM, XPS and FTIR. Benefit from these merits, the modified LiNi0.8Co0.15Al0.05O2 displays a specific capacity of 183 mAh g(-1) at 0.1 C after air-storage for 40 days, while the pristine sample drops from 195 to 144 mAh g(-1) promptly. Meanwhile, the MnO2 layer inhibits the generation of HF and protects the active material against the erosion of electrolyte in the working cell. Therefore, the MnO2 modified LiNi0.8Co0.15Al0.05O2 after storage shows a capacity retention of 87.1% at 1 C after 100 cycles, which is more stable than that of stored pristine sample (70.3%).
机译:对空气暴露的富含Ni的阴极材料的严重降解是对其大规模应用的关键限制。为了克服该问题,通过湿化学方法将MNO2功能层引入LINI0.8CO0.15000.05O2氧化物的表面。与原始样品相比,改性的LINI0.8CO0.15A10.05O2显示出增强的化学稳定性,因为其对水分和CO2的敏感性低。在MNO2改性样品表面上形成吸收的Li 2 CO 3 / LiOH物质和Ni3 +至Ni2 +的自发减少,通过SEM,TEM,XPS和FTIR的特征来证实。从这些优点中受益,修改的LINI0.8CO0.15A10.05O2在空气储存后在0.1℃下显示183mAhg(-1)的特定容量40天,而原始样品从195到144mah g( - 1)及时。同时,MNO2层抑制HF的产生并保护活性材料免受工作细胞中电解质的侵蚀。因此,在储存后的MNO2改性的LINI0.8CO0.15A10.05O2显示在100次循环后1℃的容量保留为87.1%,比储存原始样品(70.3%)更稳定。

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