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Pressure Effect of the Vibrational and Thermodynamic Properties of Chalcopyrite-Type Compound AgGaS2: A First-Principles Investigation

机译:黄铜矿型化合物AgGaS2的振动和热力学性质的压力效应:第一性原理研究

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摘要

To explore the structural, vibrational, and thermodynamic properties of the chalcopyrite-type compound AgGaS2 under pressure, we applied hydrostatic pressure to the relaxed compound based on the first principles calculation and quasi-harmonic approximation. The structural parameters, including lattice constants and bond lengths decrease monotonically with the increasing pressure. The phonon dispersion curves under various pressures reveal the structural phase transition of chalcopyrite-type compound AgGaS2 at about 4 GPa. The intrinsic mechanism of thermal conductivity for the chalcopyrite-type compound AgGaS2 has been shown with phonon anharmonicity. The frequencies of the optical phonons at the center point Γ of the first Brillouin zone were calculated with the longitudinal optical–transverse optical (LO–TO) splitting mode. The dependence of the frequencies of the optical phonons on the pressure provides the information for the Raman spectroscopic study under high pressure. The pressure dependence of the Grüneisen parameters indicates that the instability of chalcopyrite-type compound AgGaS2 is associated with the softening of the acoustic phonon modes at around the center point Γ. The thermal conductivity for chalcopyrite-type compound AgGaS2 could be reduced by applying external pressure. The various thermodynamic properties, such as the Helmholtz free energy, entropy, and heat capacity, at different temperatures and pressures were discussed and analyzed based on the phonon properties.
机译:为了探索在压力下黄铜矿型化合物AgGaS2的结构,振动和热力学性质,我们基于第一性原理计算和准谐波近似将静水压力应用于松弛化合物。结构参数,包括晶格常数和键长随压力的增加而单调降低。各种压力下的声子色散曲线揭示了黄铜矿型化合物AgGaS2在约4 GPa时的结构相变。黄铜矿型化合物AgGaS2的导热性的内在机理已经证明具有声子非谐性。用纵向光学-横向光学(LO-TO)分裂模式计算了第一个布里渊区中心点Γ处的声子的频率。光学声子频率对压力的依赖性为高压下的拉曼光谱研究提供了信息。 Grüneisen参数的压力依赖性表明,黄铜矿型化合物AgGaS2的不稳定性与中心点Γ附近声子声子模态的软化有关。黄铜矿型化合物AgGaS2的热导率可以通过施加外部压力来降低。基于声子性质,讨论并分析了在不同温度和压力下的各种热力学性质,例如亥姆霍兹自由能,熵和热容。

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