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首页> 外文期刊>RSC Advances >A corn-inspired structure design for an iron oxide fiber/reduced graphene oxide composite as a high-performance anode material for Li-ion batteries
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A corn-inspired structure design for an iron oxide fiber/reduced graphene oxide composite as a high-performance anode material for Li-ion batteries

机译:氧化铁纤维/氧化石墨烯复合材料作为锂离子电池高性能负极材料的玉米启发结构设计

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In this paper, we successfully synthesized iron oxide (Fe2O3) fiber/reduced graphene oxide (rGO) composites with a “corn” structure by an electrospinning technique assisted by annealing treatment and a far infrared reduction process. The special structure consists of Fe2O3 fibers as the “corncob” completely protected by multilayer rGO as the “sepal”. Natural void space between the Fe2O3 fibers and rGO allows for the expansion of Fe2O3 upon lithiation; the good surface area and unblocked channels in the Fe2O3 fiber facilitates fast diffusion of Li+. An electrode with such structure shows excellent capacity (1085.2 mA h g?1 at 0.1 A g?1), and cycle life (407.8 mA h g?1 at 5 A g?1 for 1500 cycles with good coulombic efficiency). This is the longest cycle life for Fe2O3-based anode materials with excellent rate capability (e.g., >400 mA h g?1 at 5 A h g?1). In addition to Fe2O3, this “corn” structure can also be applied to other high capacity anode materials for next generation Li-ion batteries to improve cycle life and coulombic efficiency.
机译:本文成功地合成了氧化铁(Fe 2 O 3 )纤维/还原氧化石墨烯(rGO )通过静电纺丝技术,具有“玉米”结构的复合材料,并辅以退火处理和远红外还原工艺。特殊结构由Fe 2 O 3 纤维组成,被“玉米芯”纤维完全由多层rGO保护。 “萼片”。 Fe 2 O 3 纤维与rGO之间的自然空隙允许Fe <锂化时sub> 2 O 3 ; Fe 2 O 3 纤维中良好的表面积和畅通的通道有助于Li 的快速扩散 + 。具有这种结构的电极显示出极好的容量(在0.1 A g ?1 时为1085.2 mA hg ?1 ),和循环寿命(407.8 mA hg ?1 在5 A g ?1 的情况下进行1500次循环,库仑效率良好)。这是基于Fe 2 O 3 的具有优异倍率性能的阳极材料的最长循环寿命( eg ,> 5 mA hg ?1 时> 400 mA hg ?1 )。除了Fe 2 O 3 之外,这种“玉米”结构还可应用于其他高容量阳极用于下一代锂离子电池的材料,可改善循环寿命和库仑效率。

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