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Super-thin LiV3O8 nanosheets/graphene sandwich-like nanostructures with ultrahigh lithium ion storage properties

机译:超薄LIV3O8纳米蛋白酶/石墨烯夹心状纳米结构,具有超高锂离子储存性能

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摘要

With the thickness less than 5 nm, super-thin LiV3O8 nanosheets have already been successfully synthesized by transformation from super-thin V2O5 center dot xH(2)O nanosheets, moreover, super-thin LiV3O8 nanosheets@graphene (LVO/G) sandwich-like layer-by-layer nanostructures were successfully obtained via a facile self-assembly method and annealing treatment. Such interesting LVO/G nanostructures as cathodes for lithium ion batteries not only show high capacity up to 397.2 mA h g(-1) and outstanding rate capabilities (171 mA h g(-1) at 10 C, 112 mA h g(-1) at 15 C), but also present super-long cycle performance (301.2 mA h g(-1) after 500 cycles at 1 C). As far as we known, the LVO/G cathodes exhibit ultrahigh lithium storage performances even much higher than those of previously reported literatures of LiV3O8, which demonstrates that such sandwich-like layer-by-layer LVO/G nanostructures is a potential candidate cathode material for the next generation of batteries.
机译:厚度小于5nm,已经通过超薄V2O5中心点XH(2)O NanosheS的转换成功地合成了超薄的LiV3O8纳米晶片,而且超薄LiV3O8纳米蛋白化(LVO / G)三明治 - 通过容易自组装方法和退火处理成功地获得了逐层纳米结构。 如锂离子电池的阴极如此有趣的LVO / G纳米结构不仅显示出高达397.2 mA Hg(-1)和出色的速率能力(171 mA Hg(-1),在10℃,112 mA Hg(-1) 15 c),但也存在超长循环性能(301.2 mA hg(-1)在1℃下500次循环后)。 据我所知,LVO / G阴极表现出超高锂储存性能,甚至高于先前报道的LiV3O8的文献,这表明这种夹层的逐层LVO / g纳米结构是潜在的候选阴极材料 对于下一代电池。

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