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Manganese spinel oxides for positive active material of lithium secondary batteries

机译:用于锂二次电池的阳性活性材料的锰尖晶石氧化物

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Recent work on lithium manganate spinel oxides, which draw attention as positive active material of the next generation lithium secondary batteries, is briefly summarized. Poor cycling performance of LiMn{sub}2O{sub}4 can be substantially improved by substituting a part of the manganese with either chromium, cobalt or nickel, though the substitution with nickel entails a decrease in the capacity density. Results of the Rietveld analysis indicate that the improved cycleability is attributable to the stability of the spinel structure due to a shorter distance of Li-O and M-O as the result of the substitution. In addition, in differential scanning calorimetry when the sample is cooled, LiMn{sub}2O{sub}4 shows an exothermic peak associated with phase transition, but this can be prevented by the substitution with chromium.
机译:简要概述了锰锰锭锂锰磷酸锂氧化物的工作,将注意力作为下一代锂二次电池的正极活性材料。 通过用铬,钴或镍的一部分代替锰的一部分,可以显着改善跛行{sub} 2o {sub} 4的循环性能。 RIETVELD分析的结果表明,由于替代的结果,改善的环粘性是由于LI-O和M-O较短的距离而导致的尖晶石结构的稳定性。 另外,在差示扫描量热法中,当样品冷却时,LiMn {sub} 2o {sub} 4显示出与相转变相关的放热峰,但是通过铬的取代可以防止这一点。

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