BaLiF3晶体的弹性及热力学性质研究

Study on Elastic and Thermodynamic Properties of BaLiF3

  • 摘要: 运用第一性原理赝势平面波密度泛函理论的方法,结合准谐德拜模型,对钙钛矿结构BaLiF3晶体的弹性及热力学性质进行研究.以优化结构为基础,计算了在p=0 GPa、T=0 K条件下,BaLiF3晶体的晶格常数、弹性常数、体弹模量和剪切模量,它们与实验值及其他理论值相符很好.计算了BaLiF3晶体在零压下的B/G值,根据晶体力学稳定条件得出BaLiF3的相变点约为186 GPa.利用准谐德拜模型,计算得到BaLiF3在300 K的德拜温度,并得到BaLiF3的体积、热容、热膨胀系数α、相对德拜温度与温度和压强的关系.在高温时,其热容接近Dulong-Petit极限.

     

    Abstract: Based on the first-principles and quasi-harmonic Debye model, the elastic and thermodynamic properties of BaLiF3 were investigated.The lattice constant,elastic constants, bulk modulus and shear modulus were calculated under zero-temperature and zero-pressure based on the optimized structure. The results were agreed well with the experimental data and other theoretical values. Then the B/G value of the BaLiF3 crystal was calculated under zero pressure, and the transition phase point of BaLiF3 is about 186 GPa, which is accorded with the stability conditions of the crystal. The Debye temperature was calculated at T=300 K by the quasi-harmonic Debye model, and the volume,heat capacity,thermal expansion coefficient α and relative Debye temperature are acquired. It was found that the heat capacity CV is close to the Dulong-Petit limit under high temperature.

     

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