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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Fe2O3@SnO2 nanoparticle decorated graphene flexible films as high-performance anode materials for lithium-ion batteries
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Fe2O3@SnO2 nanoparticle decorated graphene flexible films as high-performance anode materials for lithium-ion batteries

机译:Fe2O3 @ SnO2纳米颗粒修饰的石墨烯柔性薄膜作为锂离子电池的高性能负极材料

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摘要

A flexible graphene film decorated with spindle-like Fe2O3@SnO2 nanoparticles was fabricated through vacuum filtration of Fe2O3@SnO2 and GO mixing solution, followed by thermal reduction. The core-shell structured Fe2O3@SnO2 nanoparticles were synthesized through a facile hydro-thermal route, which avoided agglomeration of Fe2O3 and SnO2 nanoparticles and was beneficial for electrolyte diffusion. Microstructure characterizations showed that the spindle-like Fe2O3@SnO2 nanoparticles were uniformly dispersed between layered graphene nanosheets, forming a sandwich-like structure. The unique interleaved structure was favorable for lithium ion diffusion and electron transfer. As binder-free electrodes for lithium-ion batteries, the flexible Fe2O3@SnO2/GS films exhibited discharge and charge capacities of 2063 and 1255 mA h g~(-1) respectively, with an excellent cycling performance of 1015 mA h g~(-1) even after 200 cycles. The specific capacity of the Fe2O3@SnO2/GS electrode is higher than that of both Fe2O3/GS and SnO2/GS electrodes, indicating a positive synergistic effect of Fe2O3 and SnO2 on the improvement of electrochemical performance.
机译:通过真空过滤Fe2O3 @ SnO2和GO混合溶液,然后进行热还原,制得了装饰有纺锤状Fe2O3 @ SnO2纳米粒子的柔性石墨烯薄膜。通过简便的水热法合成了核壳结构的Fe2O3 @ SnO2纳米粒子,避免了Fe2O3和SnO2纳米粒子的团聚,有利于电解质的扩散。微观结构表征表明,纺锤状的Fe2O3 @ SnO2纳米颗粒均匀地分散在层状石墨烯纳米片之间,形成了三明治状的结构。独特的交错结构有利于锂离子扩散和电子转移。作为锂离子电池的无粘合剂电极,柔性的Fe2O3 @ SnO2 / GS薄膜的放电和充电容量分别为2063和1255 mA hg〜(-1),具有出色的1015 mA hg〜(-1)循环性能。 ),即使经过200个周期也是如此。 Fe2O3 @ SnO2 / GS电极的比容量均高于Fe2O3 / GS和SnO2 / GS电极,表明Fe2O3和SnO2对电化学性能的改善具有积极的协同作用。

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