Volume 4, Issue 3
The Compression Behaviors of Zirconium from the First-Principle Calculations

Lin Huang, Xiao-Li Yuan, Shou-Xin Cui & Dong-Qing Wei

J. At. Mol. Sci., 4 (2013), pp. 269-279.

Published online: 2013-04

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  • Abstract

Investigation into the structural, elastic and electronic properties for pure zirconium (Zr) crystal had been conducted by the first-principles pseudopotential method based on density functional theory. Both methods, local density approximation (LDA) and generalized gradient approximation (GGA), had been applied on the geometrical optimization of pure Zr to address the difference between two methods and their applicabilities. The result elucidated LDA could match the experimental data better, compared with method GGA. What's more, the structural properties under pressure had been stimulated and analyzed, showing crystal lattice parameters and crystalline volume change nonlinearly within the external pressure. In contrast, the single point energy of Zr showed a great linear correlation with the changing pressure. The elastic constants of the pure Zr were calculated, proving that Zr would acquire excellent ductibility and mechanical stability under pressure. In addition, the optical properties of zirconium under different pressures were analyzed. The adsorbing coefficient increased with the increasing pressure.

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COPYRIGHT: © Global Science Press

  • Email address

dqwei@sjtu.edu.cn (Dong-Qing Wei)

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@Article{JAMS-4-269, author = {Huang , LinYuan , Xiao-LiCui , Shou-Xin and Wei , Dong-Qing}, title = {The Compression Behaviors of Zirconium from the First-Principle Calculations}, journal = {Journal of Atomic and Molecular Sciences}, year = {2013}, volume = {4}, number = {3}, pages = {269--279}, abstract = {

Investigation into the structural, elastic and electronic properties for pure zirconium (Zr) crystal had been conducted by the first-principles pseudopotential method based on density functional theory. Both methods, local density approximation (LDA) and generalized gradient approximation (GGA), had been applied on the geometrical optimization of pure Zr to address the difference between two methods and their applicabilities. The result elucidated LDA could match the experimental data better, compared with method GGA. What's more, the structural properties under pressure had been stimulated and analyzed, showing crystal lattice parameters and crystalline volume change nonlinearly within the external pressure. In contrast, the single point energy of Zr showed a great linear correlation with the changing pressure. The elastic constants of the pure Zr were calculated, proving that Zr would acquire excellent ductibility and mechanical stability under pressure. In addition, the optical properties of zirconium under different pressures were analyzed. The adsorbing coefficient increased with the increasing pressure.

}, issn = {2079-7346}, doi = {https://doi.org/10.4208/jams.082712.092912a}, url = {http://global-sci.org/intro/article_detail/jams/8259.html} }
TY - JOUR T1 - The Compression Behaviors of Zirconium from the First-Principle Calculations AU - Huang , Lin AU - Yuan , Xiao-Li AU - Cui , Shou-Xin AU - Wei , Dong-Qing JO - Journal of Atomic and Molecular Sciences VL - 3 SP - 269 EP - 279 PY - 2013 DA - 2013/04 SN - 4 DO - http://doi.org/10.4208/jams.082712.092912a UR - https://global-sci.org/intro/article_detail/jams/8259.html KW - zirconium, first principles, mechanic properties, optical properties. AB -

Investigation into the structural, elastic and electronic properties for pure zirconium (Zr) crystal had been conducted by the first-principles pseudopotential method based on density functional theory. Both methods, local density approximation (LDA) and generalized gradient approximation (GGA), had been applied on the geometrical optimization of pure Zr to address the difference between two methods and their applicabilities. The result elucidated LDA could match the experimental data better, compared with method GGA. What's more, the structural properties under pressure had been stimulated and analyzed, showing crystal lattice parameters and crystalline volume change nonlinearly within the external pressure. In contrast, the single point energy of Zr showed a great linear correlation with the changing pressure. The elastic constants of the pure Zr were calculated, proving that Zr would acquire excellent ductibility and mechanical stability under pressure. In addition, the optical properties of zirconium under different pressures were analyzed. The adsorbing coefficient increased with the increasing pressure.

Lin Huang, Xiao-Li Yuan, Shou-Xin Cui & Dong-Qing Wei. (2020). The Compression Behaviors of Zirconium from the First-Principle Calculations. Journal of Atomic and Molecular Sciences. 4 (3). 269-279. doi:10.4208/jams.082712.092912a
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