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Si clusters/defective graphene composites as Li-ion batteries anode materials: A density functional study

机译:硅团簇/缺陷石墨烯复合材料作为锂离子电池负极材料:密度泛函研究

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Recently, the Si/graphene hybrid composites have attracted considerable attention due to their potential application for Li-ion batteries. How to effectively anchor Si clusters to graphene substrates to ensure their stability is an important factor to determine their performance for Li-ion batteries. In the present work, we have performed comprehensive density functional theory (DFT) calculations to investigate the geometric structures, stability, and electronic properties of the deposited Si clusters on defective graphenes as well as their potential applications for Li-ion batteries. The results indicate that the interfacial bonding between these Si clusters with the pristine graphene is quietly weak with a small adsorption energy (<-0.21 eV). Due to the presence of vacancy site, the binding strength of Si clusters on defective graphene is much stronger than that of pristine one, accompanying with a certain amount of charge transfer from Si clusters to graphene substrates. Moreover, the ability of Si/graphene hybrids for Li uptake is studied by calculating the adsorption of Li atoms. We find that both graphenes and Si clusters in the Si/graphene composites preserve their Li uptake ability, indicating that graphenes not only server as buffer materials for accommodating the expansion of Si cluster, but also provide additional intercalation sites for Li. (C) 2015 Elsevier B.V. All rights reserved.
机译:近来,Si /石墨烯杂化复合材料由于其在锂离子电池中的潜在应用而备受关注。如何有效地将硅团簇锚定在石墨烯衬底上以确保其稳定性是决定其对锂离子电池性能的重要因素。在当前的工作中,我们已经进行了全面的密度泛函理论(DFT)计算,以研究缺陷石墨烯上沉积的Si团簇的几何结构,稳定性和电子性质,以及它们在锂离子电池中的潜在应用。结果表明,这些硅团簇与原始石墨烯之间的界面键合非常弱,且吸附能小(<-0.21 eV)。由于存在空位,硅簇在有缺陷的石墨烯上的结合强度比原始的要强得多,并且伴随着一定量的电荷从硅簇向石墨烯基板的转移。此外,通过计算Li原子的吸附性,研究了Si /石墨烯杂化物吸收Li的能力。我们发现,石墨烯和Si /石墨烯复合物中的Si簇都保留了其Li的吸收能力,这表明石墨烯不仅用作缓冲材料以容纳Si簇的膨胀,而且还为Li提供了额外的嵌入位点。 (C)2015 Elsevier B.V.保留所有权利。

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