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Ion-exchange properties of P2-Na(x)MnO2: evidence of the retention of the layer structure based on chemical reactivity data and electrochemical measurements of lithium cells

机译:P2-Na(x)MnO2的离子交换特性:基于化学反应数据和锂电池电化学测量的层结构保留证据

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The ion-exchange properties of two P2-type layered NaxMnO2 bronzes (x = 0.6, 0.75) with a differential microstructure were studied in LiCF3SO3 solutions in acetonitrile under ambient conditions. Na+ ions are readily exchanged with Li+, but the reaction causes a significant loss of crystallinity that results in some amorphization. The feasibility of the process increases with increasing structural disorder in the parent compound; conversion, however, is incomplete. The ability of the exchanged material to intercalate water in the air is consistent with the formation of an Li-Mn-O compound that retains the layered framework. Also, the electrochemical data obtained for this material as cathode in lithium cells are consistent with retention of the layer structure and exclude a potential spinet transition due to the ion-exchange reaction. However, the cycling properties of cells made from these layered compounds are quite modest, probably because of the strong structural disorder induced by the lithium reaction. (C) 2003 Elsevier Inc. All rights reserved. [References: 17]
机译:在环境条件下,在LiCF3SO3乙腈溶液中研究了两种具有微结构差异的P2型层状NaxMnO2青铜(x = 0.6、0.75)的离子交换性能。 Na +离子很容易与Li +交换,但是该反应会导致结晶度明显下降,从而导致一些非晶化。该方法的可行性随着母体化合物中结构紊乱的增加而增加。但是,转换不完整。交换的材料在空气中嵌入水的能力与保留分层框架的Li-Mn-O化合物的形成是一致的。同样,对于在锂电池中作为阴极的这种材料获得的电化学数据与层结构的保持一致,并且排除了由于离子交换反应而导致的潜在的尖峰转变。然而,由这些层状化合物制成的电池的循环性能非常适中,这可能是由于锂反应引起的强烈结构紊乱。 (C)2003 Elsevier Inc.保留所有权利。 [参考:17]

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