This journal is © the Owner Societies. The phase-, pressure- and electric field-induced changes in the electronic properties of Zr dichalcogenide, ZrX2 (X = S, Se, Te), bilayers are investigated using density functional theory. On going from the trigonal (T) to hexagonal (H) phase, a significant modulation in the electronic structure of bilayer dichalcogenides is predicted. This is mainly due to the distinct stacking nature of the bilayer in two phases leading to a delicate difference in the interplanar interaction, which is concurrently affected by the nature of X-X bonding. Application of the pressure reduces the band gap of layered dichalcogenides leading to the metallization of the ZrTe2 bilayer for ≈6 GPa. Similarly, application of the...
SORPTION-EDGE; DEPENDENCE; ZNSE; GAPWe have performed first principles calculations based on density...
We have performed a systematic first-principles study of the effect of tensile strains on the electr...
We have performed first principles calculations based on density functional theory (DFT) to study th...
The phase-, pressure-and electric field-induced changes in the electronic properties of Zr dichalcog...
Tunability of the electronic properties of two-dimensional bilayer hetero structures of transition-m...
© 2015 AIP Publishing LLC. We report structural and electronic properties of ZrS 2 monolayer within...
The electronic structures of Hf1-xZrxS3 and Hf1-xZrxSe3 trichalcogenides are investigated by first-p...
We report structural and electronic properties of ZrS2 monolayer within density functional theory (D...
The evolution of the crystal structure and electrical transport properties of distorted layered tran...
Early transition metal dichalcogenides (TMDC), characterized by their quasi-two-dimensional layered ...
Using first-principles calculations we show that the band gap of bilayer sheets of semiconducting tr...
We present a comprehensive study of the electronic structures of 192 configurations of 39 stable, la...
Using density functional theory calculations, we unveil intriguing electronic properties of nanoscal...
High pressure offers an intriguing avenue for the change in physical and chemical properties of cond...
Understanding the interface formation of a conventional semiconductor with a monolayer of transition...
SORPTION-EDGE; DEPENDENCE; ZNSE; GAPWe have performed first principles calculations based on density...
We have performed a systematic first-principles study of the effect of tensile strains on the electr...
We have performed first principles calculations based on density functional theory (DFT) to study th...
The phase-, pressure-and electric field-induced changes in the electronic properties of Zr dichalcog...
Tunability of the electronic properties of two-dimensional bilayer hetero structures of transition-m...
© 2015 AIP Publishing LLC. We report structural and electronic properties of ZrS 2 monolayer within...
The electronic structures of Hf1-xZrxS3 and Hf1-xZrxSe3 trichalcogenides are investigated by first-p...
We report structural and electronic properties of ZrS2 monolayer within density functional theory (D...
The evolution of the crystal structure and electrical transport properties of distorted layered tran...
Early transition metal dichalcogenides (TMDC), characterized by their quasi-two-dimensional layered ...
Using first-principles calculations we show that the band gap of bilayer sheets of semiconducting tr...
We present a comprehensive study of the electronic structures of 192 configurations of 39 stable, la...
Using density functional theory calculations, we unveil intriguing electronic properties of nanoscal...
High pressure offers an intriguing avenue for the change in physical and chemical properties of cond...
Understanding the interface formation of a conventional semiconductor with a monolayer of transition...
SORPTION-EDGE; DEPENDENCE; ZNSE; GAPWe have performed first principles calculations based on density...
We have performed a systematic first-principles study of the effect of tensile strains on the electr...
We have performed first principles calculations based on density functional theory (DFT) to study th...