The elastic properties of the wurtzite-type aluminum nitride (w-AlN) are investigated by ab initio plane-wave pseudopotential density functional theory method. The pressure dependences of the normalized primitive ce...The elastic properties of the wurtzite-type aluminum nitride (w-AlN) are investigated by ab initio plane-wave pseudopotential density functional theory method. The pressure dependences of the normalized primitive cell volume V/Vo, the elastic constants cij, the aggregate elastic modulus (B, G, E), the Poisson's ratio (v), and the Debye temperature θD are successfully obtained. From the elastic constants of the w-AlN under pressure, we find that the w-AlN should be unstable at higher pressure than 61.33 GPa.展开更多
Density functional calculations were used to investigate the structural,electronic,optical and thermal properties of Cr_4AlB_6.The optimized lattice constants and atomic positions accord well with the experimental dat...Density functional calculations were used to investigate the structural,electronic,optical and thermal properties of Cr_4AlB_6.The optimized lattice constants and atomic positions accord well with the experimental data.The analysis of band structure and density of states confirms the metallic nature of Cr_4AlB_6.The static dielectric constant e1(0) is about 128.0,and the maximum optical conductivity occurs at about 8.12 eV.In the photon energy range from 7.87 to 23.48 e V,Cr_4AlB_6 presents a metal reflective property.The plasma resonance frequency wp of Cr_4AlB_6 is at the photon energy of 23.85 eV,and Cr_4AlB_6 will be transparent and change from metallic to dielectric response if the incident light has frequency greater than the plasma frequency of Cr_4AlB_6.Thermodynamic properties including the primitive cell volume and thermal expansion,the bulk modulus and heat capacity Cv were further investigated with the increasing temperature and pressure by using the quasi-harmonic Debye model.展开更多
基金National Natural Science Foundation of China under Grant Nos.10576020 and 10776022
文摘The elastic properties of the wurtzite-type aluminum nitride (w-AlN) are investigated by ab initio plane-wave pseudopotential density functional theory method. The pressure dependences of the normalized primitive cell volume V/Vo, the elastic constants cij, the aggregate elastic modulus (B, G, E), the Poisson's ratio (v), and the Debye temperature θD are successfully obtained. From the elastic constants of the w-AlN under pressure, we find that the w-AlN should be unstable at higher pressure than 61.33 GPa.
基金supported by the National Natural Science Foundation of China(No.U1304111)Program for Science&Technology Innovation Talents in Universities of Henan Province(No.14HASTIT039)the Innovation Team of Henan University of Science and Technology(2015XTD001)
文摘Density functional calculations were used to investigate the structural,electronic,optical and thermal properties of Cr_4AlB_6.The optimized lattice constants and atomic positions accord well with the experimental data.The analysis of band structure and density of states confirms the metallic nature of Cr_4AlB_6.The static dielectric constant e1(0) is about 128.0,and the maximum optical conductivity occurs at about 8.12 eV.In the photon energy range from 7.87 to 23.48 e V,Cr_4AlB_6 presents a metal reflective property.The plasma resonance frequency wp of Cr_4AlB_6 is at the photon energy of 23.85 eV,and Cr_4AlB_6 will be transparent and change from metallic to dielectric response if the incident light has frequency greater than the plasma frequency of Cr_4AlB_6.Thermodynamic properties including the primitive cell volume and thermal expansion,the bulk modulus and heat capacity Cv were further investigated with the increasing temperature and pressure by using the quasi-harmonic Debye model.