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Effects on electrochemical performances for host material caused by structure change of modifying material

机译:改性材料结构变化对主体材料电化学性能的影响

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High ionic conductive lithium niobium oxides were selected as the modifying material to investigate the effects on the electrochemical performances for host material LiNi_(1/3)Co_(1/3)Mn_(1/3)O2 caused by the structure change of the modifying material at various calcination temperatures and modifying amounts. X-ray diffraction (XRD) studies revealed that the structure of the modifying material was single LiNbO3 phase after being calcined at 500 °C and changed to LiNbO3-Li3NbO4 mixture phases at 600 and 700 °C, and further changed to single Li3NbO4 phase at 800 °C. Electrochemical tests displayed that both LiNbO3 and Li3NbO4 phases of modifying material could contribute to the improvement of the cycle performances for the host material, but the improvement degree of Li3NbO4 phase was more evident. The cycle performances and high rate performances of the modified host material (calcined at 700 °C) electrodes were improved with the right modifying amount.
机译:选择高离子导电锂铌氧化物作为改性材料,研究改性结构改变对主体材料LiNi_(1/3)Co_(1/3)Mn_(1/3)O2电化学性能的影响。材料在各种煅烧温度和改性量下。 X射线衍射(XRD)研究表明,改性材料的结构在500°C下煅烧后为单LiNbO3相,然后在600和700°C下转变为LiNbO3-Li3NbO4混合相,再在500°C下转变为单Li3NbO4相。 800℃。电化学测试表明,改性材料的LiNbO3和Li3NbO4相均可以改善基质材料的循环性能,但Li3NbO4相的改善程度更为明显。正确的改性量可以改善修饰主体材料(在700°C下煅烧)电极的循环性能和高倍率性能。

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