Pressure dependence of structural, elastic and electronic properties of α-Al2O3: first-principles calculations

Liu, Qi-Jun and Liu, Zheng-Tang (2016) Pressure dependence of structural, elastic and electronic properties of α-Al2O3: first-principles calculations. Sains Malaysiana, 45 (10). pp. 1551-1556. ISSN 0126-6039

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Abstract

The first-principles calculations were performed to investigate the structural, elastic, mechanical and electronic properties of α-Al2O3 at applied pressure up to 50 GPa. The obtained ground state properties were in agreement with previous experimental and theoretical data. The elastic constants, bulk modulus, shear modulus, Young’s modulus and anisotropy have been calculated as pressure increased. It was found that there was a brittle-ductile transition at about 23.2 GPa. The increasing ratio Ba /Bc with pressure indicates the weakening chemical bonding and the increasing anisotropy in this compound. The electronic structures were also calculated, which shows that band gaps increase monotonically. The population analysis showed the charge transfer was mainly between Al-3s and O-2p as pressure increased.

Item Type:Article
Keywords:Density functional theory; Elastic properties; Electronic structure; α-Al2O3
Journal:Sains Malaysiana
ID Code:10301
Deposited By: ms aida -
Deposited On:05 Apr 2017 04:24
Last Modified:06 Apr 2017 09:29

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