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Co3O4/C nanocapsules with onion-like carbon shells as anode material for lithium ion batteries

机译:具有洋葱状碳壳的Co3O4 / C纳米胶囊作为锂离子电池的负极材料

摘要

The synthesis and characterization of core/shell-type Co3O 4/C nanocapsules for application as anode material in lithium ion batteries are reported in this paper. The synthesis process involves the preparation of Co/C nanocapsules using a modified arc-discharge method and the annealing of the Co/C nanocapsules at 300 C for 2 h in air. The as-synthesized products show a spherical shape and a core/shell-type structure in which a Co3O4 nanoparticle core of diameter 10-30 nm is encapsulated by an onion-like carbon shell of thickness approximately 1 nm. The Co/C nanocapsules can be stable below 130 C, and be oxidized above 205 C in air. The Co3O4/C nanocapsules deliver an initial discharge capacity of 1467.6 mAh g-1 at 0.5 C and maintain a high reversible capacity of 1026.9 mAh g-1 after 50 charge-discharge cycles, much higher than the Co3O4 nanoparticles (471.5 mAh g -1). A postmortem analysis of the Co3O4 and Co3O4/C anodes subjected to prolonged cycling reveals the existence of a lower degree of surface cracking and particle breakage in the Co3O4/C anode than the Co3O4 anode. The improved electrochemical performance and structural stability in the Co 3O4/C nanocapsules are attributed to the enhanced electrical conductivity and structural buffering provided by the onion-like carbon shell.
机译:本文报道了用于锂离子电池负极材料的核/壳型Co3O 4 / C纳米胶囊的合成与表征。合成过程涉及使用改进的电弧放电方法制备Co / C纳米胶囊,并将Co / C纳米胶囊在300°C的空气中退火2小时。合成后的产物显示出球形和核/壳型结构,其中直径约10-30 nm的Co3O4纳米颗粒核被厚度约1 nm的洋葱状碳壳包裹。 Co / C纳米胶囊在130°C以下可以保持稳定,在205°C以上的空气中可以被氧化。 Co3O4 / C纳米胶囊在0.5 C下的初始放电容量为1467.6 mAh g-1,在经过50次充放电循环后仍保持1026.9 mAh g-1的高可逆容量,远高于Co3O4纳米颗粒(471.5 mAh g -1) )。对经过长时间循环的Co3O4和Co3O4 / C阳极的事后分析表明,与Co3O4阳极相比,Co3O4 / C阳极存在较低的表面开裂和颗粒破碎度。 Co 3O4 / C纳米胶囊的电化学性能和结构稳定性得到改善,这归因于洋葱状碳壳提供的增强的电导率和结构缓冲作用。

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