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首页> 外文期刊>Surface & Coatings Technology >Carbon-coated Si particles binding with few-layered graphene via a liquid exfoliation process as potential anode materials for lithium-ion batteries
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Carbon-coated Si particles binding with few-layered graphene via a liquid exfoliation process as potential anode materials for lithium-ion batteries

机译:碳涂覆的Si颗粒通过液体剥离工艺与少量层状石墨烯结合,作为锂离子电池的潜在阳极材料

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摘要

In our study, we propose a facile, cost-effective and green process to synthesize few layer graphene (FLG) as a buffer layer to stabilize silicon anode. The as-synthesized FLG framework not only provides electronic-conductive matrix around silicon but also buffers dramatically volume expansion of silicon during charge/discharge processes. In addition, in order to avoid the stripping of Si particles from FLG matrix during long-term cycling process, we further make a dense carbon coating on the surface of Si/FLG to obtain Si/FLG/C composite. Via the dense carbon coating, the electrochemical performance of Si/FLG/C composite could further enhance in terms of rate capability, reversible capacity and cycle life. Electrochemical results demonstrate that Si/FLG/C exhibits better electronic conductivity than that of Si/graphite/C composite. In addition, the resistance of Si/FLG/C electrode was lower than that of Si/graphite/C one by AC impendence analysis. It is believed that the graphene-modified Si/C composite could potentially have opportunities to be promising candidates as anode materials for Li-ion batteries.
机译:在我们的研究中,我们提出了一种容易,成本效益和绿色的工艺来合成几层石墨烯(FLG)作为缓冲层以稳定硅阳极。作为合成的FLG框架不仅提供硅环绕的电子导电矩阵,而且在充电/放电过程期间缓冲液相传释放硅的膨胀。另外,为了在长期循环过程中避免从FLG基质中剥离Si颗粒,我们进一步在Si / FLG表面上进行致密的碳涂层,得到Si / FLG / C复合材料。通过致密的碳涂层,Si / FLG / C复合材料的电化学性能可以进一步增强速率能力,可逆容量和循环寿命。电化学结果表明,Si / FLG / C表现出比Si /石墨/ C复合材料更好的电子电导率。此外,通过AC封闭症分析,Si / FLG / C电极的电阻低于Si / Graphite / C的电阻。据信,石墨烯改性的Si / C复合材料可能有机会希望候选人作为锂离子电池的阳极材料。

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