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氯化钠中高压结构转变和热力学性质的表征:基于密度泛函理论的计算研究

Characterization of the high-pressure structural transition and thermodynamic properties in sodium chloride: a computational investigation on the basis of the density functional theory.

作者信息

Lu Cheng, Kuang Xiao-Yu, Zhu Qin-Sheng

机构信息

Institute of Atomic and Molecular Physics, Sichuan University, Chengdu, China.

出版信息

J Phys Chem B. 2008 Nov 6;112(44):13898-905. doi: 10.1021/jp805945v. Epub 2008 Oct 15.

DOI:10.1021/jp805945v
PMID:18855434
Abstract

Using first-principles calculations, the elastic constants, the thermodynamic properties, and the structural phase transition between the B1 (rocksalt) and the B2 (cesium chloride) phases of NaCl are investigated by means of the pseudopotential plane-waves method. The calculations are performed within the generalized gradient approximation to density functional theory with the Perdew-Burke-Ernzerhof exchange-correlation functional. On the basis of the third-order Birch-Murnaghan equation of states, the transition pressure Pt between the B1 phase and the B2 phase of NaCl is determined. The calculated values are generally speaking in good agreement with experiments and with similar theoretical calculations. From the theoretical calculations, the shear modulus, Young's modulus, rigidity modulus, and Poisson's ratio of NaCl are derived. According to the quasi-harmonic Debye model, we estimated the Debye temperature of NaCl from the average sound velocity. Moreover, the pressure derivatives of elastic constants, partial differentialC11/partial differentialP, partial differentialC12/partial differentialP, partial differentialC44/partial differentialP, partial differentialS11/partial differential P, partial differentialS12/partial differentialP, and partial differentialS44/partial differentialP, for NaCl crystal are investigated for the first time. This is a quantitative theoretical prediction of the elastic and thermodynamic properties of NaCl, and it still awaits experimental confirmation.

摘要

采用第一性原理计算方法,借助赝势平面波方法研究了氯化钠在B1(岩盐)相和B2(氯化铯)相之间的弹性常数、热力学性质以及结构相变。计算是在密度泛函理论的广义梯度近似下,采用Perdew - Burke - Ernzerhof交换关联泛函进行的。基于三阶Birch - Murnaghan状态方程,确定了氯化钠B1相和B2相之间的转变压力Pt。计算值总体上与实验结果以及类似的理论计算结果吻合良好。从理论计算中,推导了氯化钠的剪切模量、杨氏模量、刚性模量和泊松比。根据准谐德拜模型,从平均声速估算了氯化钠的德拜温度。此外,首次研究了氯化钠晶体弹性常数的压力导数,即∂C11/∂P、∂C12/∂P、∂C44/∂P、∂S11/∂P、∂S12/∂P和∂S44/∂P。这是对氯化钠弹性和热力学性质的定量理论预测,仍有待实验证实。

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