This paper aims at elucidating the origin of the high thermoelectric power factor of p-type (AgxSbTe_(x/2+1.5)15)(GeTe)_(85) (TAGS) thermoelectric materials with 0.4 ≤ x ≤ 1.2. All samples exhibit good thermoelectric figures of merit (zT) which reach 1.5 at 700 K for x = 0.6. Thermoelectric and thermomagnetic transport properties (electrical resistivity, Seebeck, Hall and transverse Nernst–Ettinghausen coefficients) are measured and used to calculate the scattering factor, the Fermi energy, the density-of-states (DOS) effective mass and hole mean free path (mfp). The DOS effective mass is very high due to the large band mass of the primary valence band and the high degeneracy of pockets in the Fermi surface from the second valence band. The...
The coupling nature of thermoelectric properties determines that optimizing the Fermi level is the p...
The Seebeck coefficient and electrical conductivity are two critical quantities to optimize simultan...
According to the Mott's relation, the figure-of-merit of a thermoelectric material depends on the ch...
Low bandgap thermoelectric materials suffer from bipolar effects at high temperatures, with increase...
As a promising midtemperature thermoelectric material with both higher thermoelectric performance an...
Owing to high intrinsic figure-of-merit implemented by multi-band valleytronics, GeTe-based thermoel...
Owing to high intrinsic figure-of-merit implemented by multi-band valleytronics, GeTe-based thermoel...
Ag_(2)Te simultaneously shows high mobility and low thermal conductivity, however the relatively low...
Owing to high intrinsic figure-of-merit implemented by multi-band valleytronics, GeTe-based thermoel...
High Seebeck coefficient by creating large density-of-states effective mass through either electroni...
The coupling nature of thermoelectric properties determines that optimizing the Fermi level is the p...
The coupling nature of thermoelectric properties determines that optimizing the Fermi level is the p...
The coupling nature of thermoelectric properties determines that optimizing the Fermi level is the p...
The coupling nature of thermoelectric properties determines that optimizing the Fermi level is the p...
Enhancement of thermopower is achieved by doping the narrow-band semiconductor Ag6.52Sb6.52Ge36.96Te...
The coupling nature of thermoelectric properties determines that optimizing the Fermi level is the p...
The Seebeck coefficient and electrical conductivity are two critical quantities to optimize simultan...
According to the Mott's relation, the figure-of-merit of a thermoelectric material depends on the ch...
Low bandgap thermoelectric materials suffer from bipolar effects at high temperatures, with increase...
As a promising midtemperature thermoelectric material with both higher thermoelectric performance an...
Owing to high intrinsic figure-of-merit implemented by multi-band valleytronics, GeTe-based thermoel...
Owing to high intrinsic figure-of-merit implemented by multi-band valleytronics, GeTe-based thermoel...
Ag_(2)Te simultaneously shows high mobility and low thermal conductivity, however the relatively low...
Owing to high intrinsic figure-of-merit implemented by multi-band valleytronics, GeTe-based thermoel...
High Seebeck coefficient by creating large density-of-states effective mass through either electroni...
The coupling nature of thermoelectric properties determines that optimizing the Fermi level is the p...
The coupling nature of thermoelectric properties determines that optimizing the Fermi level is the p...
The coupling nature of thermoelectric properties determines that optimizing the Fermi level is the p...
The coupling nature of thermoelectric properties determines that optimizing the Fermi level is the p...
Enhancement of thermopower is achieved by doping the narrow-band semiconductor Ag6.52Sb6.52Ge36.96Te...
The coupling nature of thermoelectric properties determines that optimizing the Fermi level is the p...
The Seebeck coefficient and electrical conductivity are two critical quantities to optimize simultan...
According to the Mott's relation, the figure-of-merit of a thermoelectric material depends on the ch...