Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5452963 | Computational Condensed Matter | 2016 | 5 Pages |
Abstract
The pressure-induced phase transitions in SnSe have been investigated using the first-principles density functional calculations. The experimental results in the nanostructured SnSe revealed a phase transition at 4Â GPa whereas that in the well-crystallized samples showed at 10Â GPa. To understand the above discrepancy, we have used a pseudohybrid Hubbard density functional on the fully-relaxed samples of SnSe. The calculated electron energy gap of 0.83Â eV is in good agreement with the experimental values of 0.86Â eV and 0.898Â eV. The analysis of the quasi-particle band structures, Fermi energy level, Fermi-surface indicates a phase transition at 4Â GPa in accord with the enthalpy calculations. The Transmission coefficients and the current-voltage characteristics have also been analyzed for 0, 4.0, 7.0 and 10.0Â GPa. An increase in the conductivity has been observed with increase in the pressure.
Related Topics
Physical Sciences and Engineering
Materials Science
Materials Science (General)
Authors
Angsula Ghosh, M.S. Gusmão, Puspitapallab Chaudhuri, S. Michielon de Souza, Cicero Mota, D.M. Trichês, H.O. Frota,