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首页> 外文期刊>Physical review.B.Condensed matter and materials physics >Impact of dimensional crossover on phonon transport in van der Waals materials: A case study of graphite and graphene
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Impact of dimensional crossover on phonon transport in van der Waals materials: A case study of graphite and graphene

机译:Van der WALS材料中尺寸交叉对声子输送的影响:石墨和石墨烯的案例研究

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摘要

Using first-principles modeling we investigate how phonon transport evolves in layered/van der Waals materials when going from 3D to 2D, or vice versa, by gradually pulling apart the atomic layers in graphite to form graphene. Focus is placed on identifying the features impacting thermal conductivity that are likely shared with other layered materials. The thermal conductivity  of graphite is found to be lower than that of graphene in large part due to changes in the phonon dispersion driven by van der Waals coupling. Specifically, as the atomic layers are brought closer together, the acoustic fiexural phonons in graphene form low-energy optical flexural phonons in graphite that possess lower in-plane velocities, density of states, and phonon occupation, thus reducing . Similar dispersion changes, and impact on thermal conductivity, can be expected in other van der Waals materials when transitioning from 2D to 3D. Our findings also indicate that the selection rules in graphene, which reduce phonon-phonon scattering and contribute to its large , effectively hold as the atomic layers are brought together to form graphite. While the selection rules do not strictly apply to graphite, in practice reduced scattering is observed due in part to the weak interlayer coupling. This suggests that some bulk van der Waals materials may have lower phonon-phonon scattering rates than other nonlayered bulk materials.
机译:使用第一原理建模我们通过逐渐拉动图石墨中的原子层来形成卡塞运输在分层/范德瓦尔斯材料中,反之亦然,以形成石墨烯。焦点识别撞击可能与其他分层材料共享的导热率的特征。由于VAND DER WAALS联轴器驱动的声子分散的变化,发现石墨的导热系数低于石墨烯的导热率。具体地,随着原子层更靠近在一起,石墨烯中的声学性交子位在石墨中形成低能量光学弯曲声子,其具有较低的面内速度,态密度和声子占用,从而减少。在从2D到3D转换时,在其他范德华材料中可以预期类似的色散变化和对导热率的影响。我们的发现还表明石墨烯中的选择规则,其减少声子位散射并贡献其大的,有效地保持,随着原子层的聚集在一起形成石墨。虽然选择规则没有严格申请石墨,但在实践中,部分地观察到散射,部分地分开于弱层间耦合。这表明一些散装范德瓦尔斯材料可能具有比其他非层状散装材料更低的声子散射率。

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  • 来源
    《Physical review.B.Condensed matter and materials physics》 |2021年第3期|035428.1-035428.12|共12页
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    Department of Physics and Atmospheric Science Dalhousie University Halifax Nova Scotia Canada B3H 4R2;

    Department of Physics and Atmospheric Science Dalhousie University Halifax Nova Scotia Canada B3H 4R2;

    Department of Physics and Atmospheric Science Dalhousie University Halifax Nova Scotia Canada B3H 4R2;

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