NbFeSb is a promising thermoelectric material which according to experimental and theoretical studies exhibits a high power factor of up to 10 mW/(m.K^2) at room temperature and ZT of 1 at 1000 K. In all previous theoretical studies, κ_latt is calculated using simplified models, which ignore structural defects. In this work, we calculate κ_latt by solving the Boltzmann Transport Equation and subsequently including the contributions of grain boundaries, point defects and electron-phonon interaction. The results for κ_latt and ZT are in excellent agreement with experimental measurements. In addition, we investigate theoretically the thermoelectric properties of TaFeSb. The material has recently been synthesised experimentally, thus conrming t...
Abstract In line for semiconducting electronic properties, we systematically scrutinize the likely t...
The predictive performance screening of novel compounds can significantly promote the discovery of e...
We report on the structural, chemical, electrical, and thermal properties of n-type polycrystalline ...
NbFeSb is a promising thermoelectric material which according to experimental and theoretical studie...
Here we investigate the half-Heusler ZrNiPb as a n-type thermoelectric material. Our results show th...
We report a first-principles density-functional study of electron-phonon interactions in and thermoe...
We report a first-principles density-functional study of electron-phonon interactions in and thermoe...
We report a first-principles density-functional study of electron-phonon interactions in and thermoe...
The current climate makes the need for sustainable energy production a priority, leading to keen ...
Thermoelectric materials, which enable direct conversion between thermal and electrical energy, prov...
The current climate makes the need for sustainable energy production a priority, leading to keen ...
The thermoelectric figures of merit of bulk materials up to date have not overcome zT = 3, and only ...
The thermoelectric figures of merit of bulk materials up to date have not overcome zT = 3, and only ...
Conversion efficiency and output power are crucial parameters for thermoelectric power generation th...
The discovery of Heusler alloys has revolutionized the research field of intermetallics due to the e...
Abstract In line for semiconducting electronic properties, we systematically scrutinize the likely t...
The predictive performance screening of novel compounds can significantly promote the discovery of e...
We report on the structural, chemical, electrical, and thermal properties of n-type polycrystalline ...
NbFeSb is a promising thermoelectric material which according to experimental and theoretical studie...
Here we investigate the half-Heusler ZrNiPb as a n-type thermoelectric material. Our results show th...
We report a first-principles density-functional study of electron-phonon interactions in and thermoe...
We report a first-principles density-functional study of electron-phonon interactions in and thermoe...
We report a first-principles density-functional study of electron-phonon interactions in and thermoe...
The current climate makes the need for sustainable energy production a priority, leading to keen ...
Thermoelectric materials, which enable direct conversion between thermal and electrical energy, prov...
The current climate makes the need for sustainable energy production a priority, leading to keen ...
The thermoelectric figures of merit of bulk materials up to date have not overcome zT = 3, and only ...
The thermoelectric figures of merit of bulk materials up to date have not overcome zT = 3, and only ...
Conversion efficiency and output power are crucial parameters for thermoelectric power generation th...
The discovery of Heusler alloys has revolutionized the research field of intermetallics due to the e...
Abstract In line for semiconducting electronic properties, we systematically scrutinize the likely t...
The predictive performance screening of novel compounds can significantly promote the discovery of e...
We report on the structural, chemical, electrical, and thermal properties of n-type polycrystalline ...