首页> 外文OA文献 >First-Principles Investigation on Type-II Aluminum-Substituted Ternary and Quaternary Clathrate Semiconductors R8Al8Si128 (R = Cs, Rb), Cs8Na16Al24Si112
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First-Principles Investigation on Type-II Aluminum-Substituted Ternary and Quaternary Clathrate Semiconductors R8Al8Si128 (R = Cs, Rb), Cs8Na16Al24Si112

机译:第一原理研究II型铝取代的三元和季克拉静脉半导体R8Al8SI128(R = CS,RB),CS8NA16A124SI112

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摘要

Structural and vibrational properties of the aluminium-substituted ternary and quaternary clathrates R8Al8Si128 (R = Cs, Rb), Cs8Na16Al24Si112 are investigated. The equilibrium volume of R8Si136 expands when all Si atoms at the 8a crystallographic sites are replaced by Al. Formation of the Al–Si bond is thus anticipated to correlate with decreased guest vibration modes. Underestimation of the predicted lattice phonon conductivity κL (1.15 W m−1 K−1) compared to a previous experiment (1.9 W m−1 K−1) in Cs8Na16Si136 is thought to arise from our evaluation on the phonon mean free path λ using the “scattering centers” model. Accordingly, we expect that the “three-phonon” processes dominate the determination of the phonon relaxation time, leading to a more reasonable λ in the R8Al8Si128 system. Additionally, the “avoided-crossing” effect causes no appreciable difference in the sound speed for acoustic phonons in this framework. Starting with configuration optimization about aluminium arrangements in Cs8Na16Al24Si112, the calculated lattice parameter agrees well quantitatively with the experiment. The reduced Uiso of Cs from this calculation is anticipated to be primarily related to temperature-dependent quartic anharmonicity. Meanwhile, the predicted κL for Cs8Na16Al24Si112 remains not sensitive to the Al arrangement on 96g Wyckoff sites.
机译:研究了铝取代的三元和季克拉碱的结构和振动性质R8Al8SI128(R = Cs,Rb),CS8NA16A124SI112。当8A晶体位点的所有Si原子被Al取代时,R8SI136的平衡体积膨胀。因此,预计Al-Si键的形成以与降低的客观振动模式相关。低估了预测的晶格声位电导率κB(1.15W m-1 k-1)与先前的实验(1.9 W m-1 k-1)中的CS8NA16SI136中被认为是从我们对Phonon意味着自由路径λ的评估产生的“散射中心”模型。因此,我们预期“三声头”过程主导了r8Al8SI128系统中的更合理λ的声子放松时间的确定。另外,“避免交叉”效果不会导致该框架中声子音响的声音速度的明显差异。从CS8NA16A124SI112中的铝布置开始的配置优化开始,计算出的晶格参数与实验定量均匀。预计来自该计算的CS的降低的UISO主要与温度依赖性的四谐交叉相关。同时,对于96G Wyckoff站点的Al排列,CS8NA16A124SI112的预测κL仍然不敏感。

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    Dong Xue; Charles W. Myles;

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  • 年度 2019
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