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石墨烯/碳纳米管横向异质结构作为锂离子电池有前景的负极材料。

Graphene/CN lateral heterostructures as promising anode materials for lithium-ion batteries.

作者信息

Chen Yawen, Wang Qianru, Zhang Quan, Zhang Shengli, Zhang Yang

机构信息

Ministry of Education Key Laboratory for Nonequilibrium Synthesis and Modulation of Condensed Matter, School of Physics, Xi'an Jiaotong University, Xi'an 710049, China.

出版信息

Phys Chem Chem Phys. 2023 Oct 11;25(39):26557-26565. doi: 10.1039/d3cp03295g.

Abstract

Two-dimensional (2D) heterostructures have been proposed as potential anode materials for lithium-ion batteries due to their large surface areas and excellent electronic properties. In this study, we employ first-principles calculations to investigate the structural stability, electronic properties, and ion diffusion behaviors of 2D graphene/CN lateral heterostructures. Three species of (5, 26), (11, 26), and (17, 26) heterostructures are chosen to explore the effects of graphene components on electronic properties. The results show that graphene/CN lateral heterostructures exhibit good dynamic stability due to a small lattice mismatch and strong chemical interaction at the heterojunction interface. By introducing zero-gap graphene, these heterostructures acquire good electronic conductivity with small direct band gaps. The component ratio of graphene can significantly tune the band gap, showing a monotonic decrease as the ratio increases. Moreover, the introduction of CN components can greatly improve the lithium capacities of heterostructures. Small diffusion energy barriers (0.257-0.273 eV) and a low average operating voltage of 0.758 V are observed in graphene/CN heterostructures. The effects of graphene components and valence states on Li migration are discussed. Our results demonstrate that the graphene/CN lateral heterostructure can effectively combine the advantages of graphene and the CN monolayer, showing great promise as an anode material for lithium-ion batteries.

摘要

二维(2D)异质结构因其大表面积和优异的电子特性,已被提议作为锂离子电池的潜在负极材料。在本研究中,我们采用第一性原理计算来研究二维石墨烯/CN横向异质结构的结构稳定性、电子特性和离子扩散行为。选择三种(5, 26)、(11, 26)和(17, 26)异质结构来探究石墨烯组分对电子特性的影响。结果表明,由于晶格失配小且异质结界面处化学相互作用强,石墨烯/CN横向异质结构表现出良好的动态稳定性。通过引入零带隙石墨烯,这些异质结构获得了具有小直接带隙的良好电子导电性。石墨烯的组分比可显著调节带隙,随比例增加呈单调下降。此外,CN组分的引入可大大提高异质结构的锂容量。在石墨烯/CN异质结构中观察到小的扩散能垒(0.257 - 0.273 eV)和0.758 V的低平均工作电压。讨论了石墨烯组分和价态对锂迁移的影响。我们的结果表明,石墨烯/CN横向异质结构可有效结合石墨烯和CN单层的优点,作为锂离子电池负极材料具有巨大潜力。

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