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A sodium layered manganese oxides as 3 V cathode materials for secondary lithium batteries

机译:一种钠层状锰氧化物作为二次锂电池的3 V正极材料

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The synthesis of a new anhydrous sodium manganese oxide α-Na{sub}0.66MnO{sub}2.13 obtained via a sol-gel process in organic medium is reported. The partial and limited removal of sodium ions from the layered host lattice (hexagonal symmetry; a = 2.84 A, c = 11.09 A) allows to get a high and stable specific capacity of 180 mAh g{sup}(-1)at C/20 in the cycling limits 4.3/2 V with a mean working voltage of 3 V without the emergence of a spinel phase. By introducing acetylene black in solution during the sol-gel reaction, a composite material containing 8 wt.% AB has been obtained. The rate capability is shown to be significantly improved leading to an increase of the available specific capacity with for instance 200 and 90 mAh g{sup}(-1) at C/20 and C rate. This effect is ascribed to a better electronic contact between particles and/or the modification of the oxide surface which makes the intercalation process more homogeneous and more efficient.
机译:报道了在有机介质中通过溶胶-凝胶法获得的新型无水氧化锰钠锰α-Na{sub} 0.66MnO {sub} 2.13的合成。从层状主体晶格中钠离子的部分和有限去除(六边形对称; a = 2.84 A,c = 11.09 A)允许在C /下获得180 mAh g {sup}(-1)的高且稳定的比容量。循环极限中的20为4.3 / 2 V,平均工作电压为3 V,没有出现尖晶石相。通过在溶胶-凝胶反应期间将乙炔黑引入溶液中,已经获得了包含8重量%AB的复合材料。速率能力显示出显着提高,从而导致可用比容量增加,例如在C / 20和C速率下200和90 mAh g {sup}(-1)。该效果归因于颗粒之间更好的电子接触和/或氧化物表面的改性,这使得插层过程更均匀和更有效。

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