首页> 外文期刊>Electrochimica Acta >Multi-layered Al2O3/LixV2O5/LiV3O8 nanoflakes with superior cycling stability as cathode material for Li-ion battery
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Multi-layered Al2O3/LixV2O5/LiV3O8 nanoflakes with superior cycling stability as cathode material for Li-ion battery

机译:具有优异循环稳定性的多层Al2O3 / LixV2O5 / LiV3O8纳米薄片作为锂离子电池的正极材料

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摘要

Al2O3 coating is utilized in this work to further improve the cycling stability of LiV3O8 nanoflakes. Surprisingly, three layered Al2O3/LixV2O5/LiV3O8 nanostructure is well formed as confirmed by X-ray diffraction (XRD), high resolution transmission electron microscopy (HRTEM) and X-ray photoelectron spectroscopy (XPS) results. When used as a cathode for Li-ion battery, the hybrid demonstrates significantly improved cycling stability with a discharge capacity of 203mAhg(-1) remaining after 200 cycles at 150mAg(-1) and 87.5% of the initial capacity maintaining after 500 cycles at 300mA g(-1). Such superior cycling performance should be attributed to the mutual protection of Al2O3 and LixV2O5 layer between Al2O3 and LiV3O8, which can well suppress the damage of LiV3O8 during the long-term cycling process. More importantly, the LixV2O5 middle layer could contribute to the improvement of interfacial electrochemical properties of the hybrid electrode. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在这项工作中使用了Al2O3涂层,以进一步提高LiV3O8纳米薄片的循环稳定性。出乎意料的是,通过X射线衍射(XRD),高分辨率透射电子显微镜(HRTEM)和X射线光电子能谱(XPS)的结果,可以很好地形成三层Al2O3 / LixV2O5 / LiV3O8纳米结构。当用作锂离子电池的阴极时,该混合动力电池显示出明显改善的循环稳定性,在150mAg(-1)下200次循环后,其放电容量为203mAhg(-1),在500mAg(-1)下进行500次循环后,其初始容量为87.5%。 300mA g(-1)。这种优异的循环性能应归因于Al2O3和LiV3O8之间的Al2O3和LixV2O5层的相互保护,可以很好地抑制LiV3O8在长期循环过程中的损坏。更重要的是,LixV2O5中间层可有助于改善混合电极的界面电化学性能。 (C)2015 Elsevier Ltd.保留所有权利。

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