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首页> 外文期刊>ACS nano >In-situ formation of sandwiched structures of nanotube/Cu_xO _y/Cu composites for lithium battery applications
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In-situ formation of sandwiched structures of nanotube/Cu_xO _y/Cu composites for lithium battery applications

机译:锂电池应用中纳米管/ Cu_xO_y / Cu复合材料夹层结构的原位形成

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摘要

Development of materials and structures leading to lithium ion batteries with high energy and power density is a major requirement for catering to the power needs of present day electronic industry. Here, we report an in situ formation of a sandwiched structure involving single-walled carbon nanotube film, copper oxide, and copper during the direct synthesis of nanotube macrofilms over copper foils and their electrochemical performance in lithium ion batteries. The sandwiched structure showed a remarkably high reversible capacity of 220 mAh/g at a high cycling Current of 18.6 A/g (50 C), leading to a significantly improved electrochemical performance which is extremely high compared to pure carbon nanotube and any other carbon based materials.
机译:为了满足当今电子工业的电力需求,开发导致具有高能量和功率密度的锂离子电池的材料和结构是主要需求。在这里,我们报道了在铜箔上直接合成纳米管大薄膜及其在锂离子电池中的电化学性能期间,单层碳纳米管薄膜,氧化铜和铜的夹心结构的原位形成。夹层结构在18.6 A / g(50 C)的高循环电流下显示出220 mAh / g的极高可逆容量,从而导致电化学性能得到显着改善,与纯碳纳米管和任何其他碳基碳纳米管相比,电化学性能极高材料。

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