Using first-principles calculations, we investigate the electronic, mechanical, and optical properties of monolayer WTe2. Atomic structure and ground state properties of monolayer WTe2 (Td phase) are anisotropic which are in contrast to similar monolayer crystals of transition metal dichalcogenides, such as MoS2, WS2, MoSe2, WSe2, and MoTe2, which crystallize in the H-phase. We find that the Poisson ratio and the in-plane stiffness is direction dependent due to the symmetry breaking induced by the dimerization of the W atoms along one of the lattice directions of the compound. Since the semimetallic behavior of the Td phase originates from this W-W interaction (along the a crystallographic direction), tensile strain along the dimer directio...
We study the electronic properties of monolayer transition metal dichalcogenide materials subjected ...
The strain-controlled structural, electronic, and optical characteristics of monolayer β-AuSe are sy...
We employ a recent formulation for the optical properties of two-dimensional crystals from first pri...
Using first-principles calculations, we investigate the electronic, mechanical, and optical properti...
Using first-principles calculations, we investigate the electronic, mechanical, and optical properti...
Using first-principles calculations, we investigate the electronic, mechanical, and optical properti...
The structural, electronic, vibrational, and optical properties of 2D- 2H-WTe2 monolayer are investi...
Monolayers of transition metal dichalcogenides (TMDs) have been proposed as the next generation elec...
We investigate the optical properties of monolayer, bilayer, trilayer, and quadrilayer WTe2 in the 1...
The behaviour of electrons and holes in a crystal lattice is a fundamental quantum phenomenon, accou...
We report first principles calculations of the electronic structure of monolayer 1H-MX2 (M = Mo, W; ...
WTe2, an orthorhombic semimetal crystallized in Td phase, is a new transition metal dichalcogenide (...
We characterize the electronic structure and elasticity of monolayer transition-metal dichalcogenide...
Using first principles calculations, we investigate the structural, vibrational and electronic struc...
Single layer transition-metal dichalcogenides materials (MoS2, MoSe2, WS2 and WSe2) are investigated...
We study the electronic properties of monolayer transition metal dichalcogenide materials subjected ...
The strain-controlled structural, electronic, and optical characteristics of monolayer β-AuSe are sy...
We employ a recent formulation for the optical properties of two-dimensional crystals from first pri...
Using first-principles calculations, we investigate the electronic, mechanical, and optical properti...
Using first-principles calculations, we investigate the electronic, mechanical, and optical properti...
Using first-principles calculations, we investigate the electronic, mechanical, and optical properti...
The structural, electronic, vibrational, and optical properties of 2D- 2H-WTe2 monolayer are investi...
Monolayers of transition metal dichalcogenides (TMDs) have been proposed as the next generation elec...
We investigate the optical properties of monolayer, bilayer, trilayer, and quadrilayer WTe2 in the 1...
The behaviour of electrons and holes in a crystal lattice is a fundamental quantum phenomenon, accou...
We report first principles calculations of the electronic structure of monolayer 1H-MX2 (M = Mo, W; ...
WTe2, an orthorhombic semimetal crystallized in Td phase, is a new transition metal dichalcogenide (...
We characterize the electronic structure and elasticity of monolayer transition-metal dichalcogenide...
Using first principles calculations, we investigate the structural, vibrational and electronic struc...
Single layer transition-metal dichalcogenides materials (MoS2, MoSe2, WS2 and WSe2) are investigated...
We study the electronic properties of monolayer transition metal dichalcogenide materials subjected ...
The strain-controlled structural, electronic, and optical characteristics of monolayer β-AuSe are sy...
We employ a recent formulation for the optical properties of two-dimensional crystals from first pri...