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首页> 外文期刊>CERAMICS INTERNATIONAL >Liquid-solid-solution assembly of morphology-controllable Fe2O3/graphene nanostructures as high-performance LIB anodes
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Liquid-solid-solution assembly of morphology-controllable Fe2O3/graphene nanostructures as high-performance LIB anodes

机译:形态可控的Fe2O3 /石墨烯纳米结构的液固溶液组装作为高性能LIB阳极

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摘要

Fe2O3@rGO nanostructures with different Fe2O3 morphologies (nanoplates and nanoparticles) have been successfully fabricated by a simple and novel liquid-solid-solution (LSS) hydrothermal method. The Fe2O3@rGO composites with different morphologies and sizes were obtained at the oil/water interface by simply adjusting the concentration of Fe2+ ions and GO solution. Through the in situ solvothermal crystalization and growth process, Fe(2)O(3)can be uniformly anchored on the crumpled graphene sheets without aggregation. When acting as lithium ion battery anodes, the Fe2O3@rGO composite can deliver a reversible capacity of 1207 mA h g(-1) at 0.2 A g(-1) after 60 cycles, and a high rate capability of 548 mA h g(-1) even under a high current density of 12.8 A g(-1) (corresponds to a charge time of similar to 150 s). The high electrochemical performance indicates this synthesis technique may be a promising route to produce advanced anode materials for high-end lithium ion batteries.
机译:通过简单新颖的液固溶液(LSS)水热法成功地制备了具有不同Fe2O3形态的Fe2O3 @ rGO纳米结构(纳米板和纳米颗粒)。只需调节Fe2 +离子和GO溶液的浓度,即可在油/水界面获得具有不同形貌和尺寸的Fe2O3 @ rGO复合材料。通过原位溶剂热结晶和生长过程,Fe(2)O(3)可以均匀地锚固在皱缩的石墨烯片上而不会聚集。当用作锂离子电池阳极时,Fe2O3 @ rGO复合材料在60个循环后可在0.2 A g(-1)下提供1207 mA hg(-1)的可逆容量,并具有5​​48 mA hg(-1)的高倍率容量)即使在12.8 A g(-1)的高电流密度下(相当于约150 s的充电时间)。高电化学性能表明该合成技术可能是生产用于高端锂离子电池的高级负极材料的有前途的途径。

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