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Stacking stability and sliding mechanism in weakly bonded 2D transition metal carbides by van der Waals force

机译:van der Waals力堆叠弱粘合2D过渡金属碳化物中的稳定性和滑动机制

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摘要

The stability of the stacked two-dimensional (2D) transition metal carbides and their interlayered friction in different configurations are comparatively studied by means of density functional theory (DFT). At equilibrium, a larger interlayer distance corresponds to a smaller binding energy, suggesting an easier sliding between them. The oxygen-functionalized M2CO2 possesses much lower sliding resistance than the bare ones due to the strong metallic interactions between the stacked M2C layers. Compared to the parallel stacking order of M2CO2-I, the mirror stacked M2CO2-II possesses better lubricant properties. At strained states, normal compression substantially enhances the sliding barrier owing to more charges transferring from the M to O atom. Furthermore, the in-plane biaxial strain may effectively hinder the interlayer sliding, while the uniaxial strain fundamentally modifies the preferred sliding pathway due to anisotropic expansion of surface electronic state. These results highlight that the functionalized MXenes with strain-controllable frictional properties are promising lubricating materials because of their low sliding energy barrier and excellent mechanical properties.
机译:通过密度泛函理论(DFT)相对地研究堆叠的二维(2D)过渡金属碳化物及其在不同配置中的层间摩擦的稳定性。在平衡时,更大的层间距离对应于较小的绑定能量,这表明它们之间更容易滑动。由于堆叠的M2C层之间的强金属相互作用,氧官能化M2CO2具有比裸露的滑动电阻更低。与M2CO2-I的平行堆叠顺序相比,镜子堆叠M2CO2-II具有更好的润滑剂性能。在应变状态下,由于从M到O原子传递的更多电荷,正常压缩基本上增加了滑动屏障。此外,面内双轴应变可以有效地阻碍层间滑动,而单轴应变由于表面电子状态的各向异性膨胀而基本上改变优选的滑动路径。这些结果强调,具有应变可控摩擦性能的官能化MxENs是具有润滑材料的润滑材料,因为它们的滑动能阻挡且优异的机械性能。

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  • 来源
    《RSC Advances》 |2017年第88期|共8页
  • 作者单位

    Beihang Univ Sch Mat Sci &

    Engn Beijing 100191 Peoples R China;

    Beihang Univ Sch Mat Sci &

    Engn Beijing 100191 Peoples R China;

    VSB Tech Univ Ostrava Ctr IT4Innovat CZ-70833 Ostrava Czech Republic;

    Los Alamos Natl Lab Div Theoret Los Alamos NM 87545 USA;

    Beihang Univ Sch Mat Sci &

    Engn Beijing 100191 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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