The theoretical investigation on structural, vibrational, and electronic properties of zinc-blende (ZB) AgI were carried out employing first principles density functional theory calculations. Thermoelectric properties then were predicted through semi-classical Boltzmann transport equations within the constant relaxation time approximation. Equilibrium lattice parameter, bulk modulus, elastic constants, and vibrational properties were calculated by using generalized gradient approximation. Calculated properties are in good agreement with available experimental values. Electronic and thermoelectric properties were investigated both with and without considering spin-orbit coupling (SOC) effect which is found to have a strong influence on p-typ...
Thermoelectric materials play an important role in energy conversion as they represent environmental...
We propose a new method for accurately calculating electrical transport properties of a lightly-dope...
We have systematically studied the structural, elastic, electronic, dynamical and thermodynamical pr...
We report a detailed first principles density functional calculations to understand the electronic\u...
Thermoelectric materials, which enable direct conversion between thermal and electrical energy, prov...
We investigated the dynamical stability, electronic and thermoelectric properties of the ZnFeTiSi He...
We investigated the dynamical stability, electronic and thermoelectric properties of the ZnFeTiSi He...
Bu tez çalışmasında AgI’nın würtzite ve çinkoblend fazları için P=0 GPa basınç altında ve kaya-tuzu...
We present a first-principles density functional theory-based analysis of the electronic structure, ...
International audienceOrthorhombic ZnSb has been investigated by means of first-principles calculati...
While the primary properties of thermoelectric devices, directly related to the conversion efficienc...
While the primary properties of thermoelectric devices, directly related to the conversion efficienc...
First-principles calculations were carried out to study the structural, mechanical, dynamical and tr...
First-principles calculations were carried out to study the structural, mechanical, dynamical and tr...
The inexpensive, earth abundant, and non-toxic thermoelectric materials are relentlessly demanded to...
Thermoelectric materials play an important role in energy conversion as they represent environmental...
We propose a new method for accurately calculating electrical transport properties of a lightly-dope...
We have systematically studied the structural, elastic, electronic, dynamical and thermodynamical pr...
We report a detailed first principles density functional calculations to understand the electronic\u...
Thermoelectric materials, which enable direct conversion between thermal and electrical energy, prov...
We investigated the dynamical stability, electronic and thermoelectric properties of the ZnFeTiSi He...
We investigated the dynamical stability, electronic and thermoelectric properties of the ZnFeTiSi He...
Bu tez çalışmasında AgI’nın würtzite ve çinkoblend fazları için P=0 GPa basınç altında ve kaya-tuzu...
We present a first-principles density functional theory-based analysis of the electronic structure, ...
International audienceOrthorhombic ZnSb has been investigated by means of first-principles calculati...
While the primary properties of thermoelectric devices, directly related to the conversion efficienc...
While the primary properties of thermoelectric devices, directly related to the conversion efficienc...
First-principles calculations were carried out to study the structural, mechanical, dynamical and tr...
First-principles calculations were carried out to study the structural, mechanical, dynamical and tr...
The inexpensive, earth abundant, and non-toxic thermoelectric materials are relentlessly demanded to...
Thermoelectric materials play an important role in energy conversion as they represent environmental...
We propose a new method for accurately calculating electrical transport properties of a lightly-dope...
We have systematically studied the structural, elastic, electronic, dynamical and thermodynamical pr...