We have performed first principles calculations based on density functional theory (DFT) to study the structural, mechanical and electronic properties, and pressure-induced phase transition behavior of ZnTe. The generalized gradient approximation is employed together with the projector augmented wave potentials to describe the electron-ion interaction. We consider zinc blende (B3) structure as the ambient pressure phase, the cinnabar (B3), Cmcm (B33) and rocksalt (B1) structures as candidates for the high pressure phases. The calculated structural properties are in good agreement with the experiments and earlier ab initio predictions, as is the transition pressure between them. We determine the sequence of the structural phase transition of...
A systematic first-principles investigation, by using the density functional formalism with the nonl...
We have performed the ab initio calculations based on density functional theory to investigate the B...
Using the rich polymorphism of ZnX (X: S, Se, Te) compounds, we show how local pressures can be uneq...
SORPTION-EDGE; DEPENDENCE; ZNSE; GAPWe have performed first principles calculations based on density...
We report the results of a theoretical study of structural, electronic, and pressure-induced phase t...
We report the results of a theoretical study of structural, electronic, and pressure-induced phase t...
We report the results of a theoretical study of structural, electronic, and pressure-induced phase t...
Purpose: The aim of this work investigate to the structural and mechanical properties of ZnTe in the...
A systematic first-principles investigation, by using the density functional formalism with the nonl...
A systematic first-principles investigation, by using the density functional formalism with the nonl...
WOS: 000263889900025PubMed ID: 21817464Ab initio constant pressure molecular dynamics simulations wi...
The crystalline and electronic structural properties of Zinc Telluride (ZnTe) are investigated syste...
Abstract. An effective interaction potential (EIOP) is developed to invoke the pressure induced phas...
We have performed the ab initio calculations based on density functional theory to investigate the B...
The structural, vibrational and electronic properties of ZnSe under different pressure environments ...
A systematic first-principles investigation, by using the density functional formalism with the nonl...
We have performed the ab initio calculations based on density functional theory to investigate the B...
Using the rich polymorphism of ZnX (X: S, Se, Te) compounds, we show how local pressures can be uneq...
SORPTION-EDGE; DEPENDENCE; ZNSE; GAPWe have performed first principles calculations based on density...
We report the results of a theoretical study of structural, electronic, and pressure-induced phase t...
We report the results of a theoretical study of structural, electronic, and pressure-induced phase t...
We report the results of a theoretical study of structural, electronic, and pressure-induced phase t...
Purpose: The aim of this work investigate to the structural and mechanical properties of ZnTe in the...
A systematic first-principles investigation, by using the density functional formalism with the nonl...
A systematic first-principles investigation, by using the density functional formalism with the nonl...
WOS: 000263889900025PubMed ID: 21817464Ab initio constant pressure molecular dynamics simulations wi...
The crystalline and electronic structural properties of Zinc Telluride (ZnTe) are investigated syste...
Abstract. An effective interaction potential (EIOP) is developed to invoke the pressure induced phas...
We have performed the ab initio calculations based on density functional theory to investigate the B...
The structural, vibrational and electronic properties of ZnSe under different pressure environments ...
A systematic first-principles investigation, by using the density functional formalism with the nonl...
We have performed the ab initio calculations based on density functional theory to investigate the B...
Using the rich polymorphism of ZnX (X: S, Se, Te) compounds, we show how local pressures can be uneq...