GeTe with rhombohedral-to-cubic phase transition is a promising lead-free thermoelectric candidate. Herein, theoretical studies reveal that cubic GeTe has superior thermoelectric behavior, which is linked to (1) the two valence bands to enhance the electronic transport coefficients and (2) stronger enharmonic phonon-phonon interactions to ensure a lower intrinsic thermal conductivity. Experimentally, based on Ge1-x Sbx Te with optimized carrier concentration, a record-high figure-of-merit of 2.3 is achieved via further doping with In, which induces the distortion of the density of states near the Fermi level. Moreover, Sb and In codoping reduces the phase-transition temperature to extend the better thermoelectric behavior of cubic GeTe to l...
Driven by the ability to harvest waste heat into reusable electricity and the exclusive role of serv...
The recovery of waste heat through the use of thermoelectric (TE) devices is an attractive solution ...
High thermoelectric figure of merit, <i>zT</i>, of ∼1.85 at 725 K along with significant cyclable te...
GeTe with rhombohedral-to-cubic phase transition is a promising lead-free thermoelectric candidate. ...
Rock-salt structured GeTe has been reckoned as a promising medium temperature thermoelectric materia...
GeTe is highly sought-after due to its versatility as high-performance thermoelectrics, phase change...
GeTe experiences phase transition between cubic and rhombohedral through distortion along the [111] ...
Complementary and beneficial effects of Sb and Bi codoping in GeTe are shown to generate high thermo...
Conspectus: The ever-growing energy crisis and the deteriorated environment caused by carbon energy ...
Pristine GeTe shows promising thermoelectric performance but is limited by the high carrier concentr...
The nanostructure of bulk germanium antimony tellurides (GST materials) can be tuned by utilizing p...
Owing to high intrinsic figure-of-merit implemented by multi-band valleytronics, GeTe-based thermoel...
High-performance GeTe-based thermoelectrics have been recently attracting growing research interest....
Owing to high intrinsic figure-of-merit implemented by multi-band valleytronics, GeTe-based thermoel...
Driven by the ability to harvest waste heat into reusable electricity and the exclusive role of serv...
Driven by the ability to harvest waste heat into reusable electricity and the exclusive role of serv...
The recovery of waste heat through the use of thermoelectric (TE) devices is an attractive solution ...
High thermoelectric figure of merit, <i>zT</i>, of ∼1.85 at 725 K along with significant cyclable te...
GeTe with rhombohedral-to-cubic phase transition is a promising lead-free thermoelectric candidate. ...
Rock-salt structured GeTe has been reckoned as a promising medium temperature thermoelectric materia...
GeTe is highly sought-after due to its versatility as high-performance thermoelectrics, phase change...
GeTe experiences phase transition between cubic and rhombohedral through distortion along the [111] ...
Complementary and beneficial effects of Sb and Bi codoping in GeTe are shown to generate high thermo...
Conspectus: The ever-growing energy crisis and the deteriorated environment caused by carbon energy ...
Pristine GeTe shows promising thermoelectric performance but is limited by the high carrier concentr...
The nanostructure of bulk germanium antimony tellurides (GST materials) can be tuned by utilizing p...
Owing to high intrinsic figure-of-merit implemented by multi-band valleytronics, GeTe-based thermoel...
High-performance GeTe-based thermoelectrics have been recently attracting growing research interest....
Owing to high intrinsic figure-of-merit implemented by multi-band valleytronics, GeTe-based thermoel...
Driven by the ability to harvest waste heat into reusable electricity and the exclusive role of serv...
Driven by the ability to harvest waste heat into reusable electricity and the exclusive role of serv...
The recovery of waste heat through the use of thermoelectric (TE) devices is an attractive solution ...
High thermoelectric figure of merit, <i>zT</i>, of ∼1.85 at 725 K along with significant cyclable te...