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An ab initio study on the investigation of structural, electronic, mechanical and lattice dynamical properties of the M(2)AX type MAX phases Sc2AlB0.5C0.5, Sc2AlB0.5N0.5 and Sc2AlC0.5N0.5 compounds
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G. SÜRÜCÜ And A. Erkisi, "An ab initio study on the investigation of structural, electronic, mechanical and lattice dynamical properties of the M(2)AX type MAX phases Sc2AlB0.5C0.5, Sc2AlB0.5N0.5 and Sc2AlC0.5N0.5 compounds," MATERIALS RESEARCH EXPRESS , vol.4, no.10, 2017

SÜRÜCÜ, G. And Erkisi, A. 2017. An ab initio study on the investigation of structural, electronic, mechanical and lattice dynamical properties of the M(2)AX type MAX phases Sc2AlB0.5C0.5, Sc2AlB0.5N0.5 and Sc2AlC0.5N0.5 compounds. MATERIALS RESEARCH EXPRESS , vol.4, no.10 .

SÜRÜCÜ, G., & Erkisi, A., (2017). An ab initio study on the investigation of structural, electronic, mechanical and lattice dynamical properties of the M(2)AX type MAX phases Sc2AlB0.5C0.5, Sc2AlB0.5N0.5 and Sc2AlC0.5N0.5 compounds. MATERIALS RESEARCH EXPRESS , vol.4, no.10.

SÜRÜCÜ, GÖKHAN, And GÖKHAN SÜRÜCÜ. "An ab initio study on the investigation of structural, electronic, mechanical and lattice dynamical properties of the M(2)AX type MAX phases Sc2AlB0.5C0.5, Sc2AlB0.5N0.5 and Sc2AlC0.5N0.5 compounds," MATERIALS RESEARCH EXPRESS , vol.4, no.10, 2017

SÜRÜCÜ, GÖKHAN And Erkisi, GÖKHAN. "An ab initio study on the investigation of structural, electronic, mechanical and lattice dynamical properties of the M(2)AX type MAX phases Sc2AlB0.5C0.5, Sc2AlB0.5N0.5 and Sc2AlC0.5N0.5 compounds." MATERIALS RESEARCH EXPRESS , vol.4, no.10, 2017

SÜRÜCÜ, G. And Erkisi, A. (2017) . "An ab initio study on the investigation of structural, electronic, mechanical and lattice dynamical properties of the M(2)AX type MAX phases Sc2AlB0.5C0.5, Sc2AlB0.5N0.5 and Sc2AlC0.5N0.5 compounds." MATERIALS RESEARCH EXPRESS , vol.4, no.10.

@article{article, author={GÖKHAN SÜRÜCÜ And author={GÖKHAN SÜRÜCÜ}, title={An ab initio study on the investigation of structural, electronic, mechanical and lattice dynamical properties of the M(2)AX type MAX phases Sc2AlB0.5C0.5, Sc2AlB0.5N0.5 and Sc2AlC0.5N0.5 compounds}, journal={MATERIALS RESEARCH EXPRESS}, year=2017}