The kesterite Cu2ZnGeS4 (CZGS) has recently gained significant interest in the scientific community. In this work, we investigated the thermodynamic and thermoelectric properties of CZGS by employing the first-principals calculation in association with the quasi-harmonic approximation, Boltzmann transport theory, deformation potential theory, and slack model. We obtained a bandgap of 2.05 eV and high carrier mobility. We found that CZGS exhibits adequate thermoelectric properties as a promising material for thermoelectric applications. The calculated Seebeck coefficient at room temperature is 149 µV·K−1. We also determined the thermal and electrical conductivity, the power factor, and the figure of merit. In addition, the thermodynamic prop...
In this article, we report the elastic, electronic, optical and thermoelectric properties of recentl...
We investigated the electronic structures and thermoelectric properties of CuMTe2 (M = Al Ga, In) co...
Chalcopyrite-structured semiconductors have promising potential as low-cost thermoelectric materials...
Cu2ZnSnS4 (CZTS) is a promising material for photovoltaic and thermoelectric applications. Issues wi...
In this work, a detailed information about physical properties of Cu2ZnSnS4 stannite phase by first ...
In this paper, structural, elastic, and dynamical properties of Cu2ZnSnS4 and Cu2ZnSnSe4 are calcula...
One of the major reasons for a recent stuck of the development of kesterite based photovoltaic devic...
One of the major reasons for a recent stuck of the development of kesterite based photovoltaic devic...
Knowledge of structure–property relationships is a key feature of materials design. The control of t...
International audienceThermoelectric colusites, one of the most recently identified and most promisi...
Electronic and thermoelectric properties of ternary chalcopyrite-type CuAlCh 2 (S, Se and Te) were s...
A comparative study of kesterite (KS) and stannite (ST) phases of Cu-2(Sn1-xGex)ZnSe4 (CTGZSe) alloy...
We report the band structure calculations for high temperature cubic phase of copper selenide (Cu2Se...
Thermoelectric materials, which enable direct conversion between thermal and electrical energy, prov...
Electronic and transport properties of CuGaTe2, a hole-doped ternary copper based chalcopyrite type ...
In this article, we report the elastic, electronic, optical and thermoelectric properties of recentl...
We investigated the electronic structures and thermoelectric properties of CuMTe2 (M = Al Ga, In) co...
Chalcopyrite-structured semiconductors have promising potential as low-cost thermoelectric materials...
Cu2ZnSnS4 (CZTS) is a promising material for photovoltaic and thermoelectric applications. Issues wi...
In this work, a detailed information about physical properties of Cu2ZnSnS4 stannite phase by first ...
In this paper, structural, elastic, and dynamical properties of Cu2ZnSnS4 and Cu2ZnSnSe4 are calcula...
One of the major reasons for a recent stuck of the development of kesterite based photovoltaic devic...
One of the major reasons for a recent stuck of the development of kesterite based photovoltaic devic...
Knowledge of structure–property relationships is a key feature of materials design. The control of t...
International audienceThermoelectric colusites, one of the most recently identified and most promisi...
Electronic and thermoelectric properties of ternary chalcopyrite-type CuAlCh 2 (S, Se and Te) were s...
A comparative study of kesterite (KS) and stannite (ST) phases of Cu-2(Sn1-xGex)ZnSe4 (CTGZSe) alloy...
We report the band structure calculations for high temperature cubic phase of copper selenide (Cu2Se...
Thermoelectric materials, which enable direct conversion between thermal and electrical energy, prov...
Electronic and transport properties of CuGaTe2, a hole-doped ternary copper based chalcopyrite type ...
In this article, we report the elastic, electronic, optical and thermoelectric properties of recentl...
We investigated the electronic structures and thermoelectric properties of CuMTe2 (M = Al Ga, In) co...
Chalcopyrite-structured semiconductors have promising potential as low-cost thermoelectric materials...