Dilute isovalent sulfur doping simultaneously increases electrical conductivity and Seebeck coefficient in Bi2 Te2 Se nanoplates, and bulk pellets made from them. This unusual trend at high electron concentrations is underpinned by multifold increases in electron effective mass attributable to sulfur-induced band topology effects, providing a new way for accessing a high thermoelectric figure-of-merit in topological-insulator-based nanomaterials through doping
Seebeck coefficient is determined by the asymmetry of density of states across Fermi level and their...
International audienceβ-As2Te3 belongs to the family of the (Bi,Sb)2X3 (X = Se, Te) alloys, which re...
Taming electronic and thermal transport properties is the ultimate goal in the quest to achieve unpr...
The thermoelectric (TE) performance of pristine Bi2Se3 is inferior to that of Bi2Te3. Therefore, the...
Thermoelectric (TE) devices have been attracting increasing attention because of their ability to co...
In competitive thermoelectric devices for energy conversion and generation, high-efficiency material...
In this paper, we show how the thermoelectric properties can be modified in crystallographic structu...
Bismuth chalcogenides are promising materials for thermoelectric (TE) application due to their high ...
As one of the most important n-type thermoelectric (TE) materials, Bi2Te3 has been studied for decad...
Tuning the electron and phonon transport properties of thermoelectric materials by nanostructuring h...
Good thermoelectric performance is being sought to face major problems related to energy, especially...
The cost-effective conversion of low-grade heat into electricity using thermoelectric devices requir...
We measure gate-tuned thermoelectric power of mechanically exfoliated Bi<sub>2</sub>Se<sub>3</sub> t...
The n‐type semiconductor system Bi2Te3Bi2Se3 is known as a low‐temperature thermoelectric material w...
The cost-effective conversion of low-grade heat into electricity using thermoelectric devices requir...
Seebeck coefficient is determined by the asymmetry of density of states across Fermi level and their...
International audienceβ-As2Te3 belongs to the family of the (Bi,Sb)2X3 (X = Se, Te) alloys, which re...
Taming electronic and thermal transport properties is the ultimate goal in the quest to achieve unpr...
The thermoelectric (TE) performance of pristine Bi2Se3 is inferior to that of Bi2Te3. Therefore, the...
Thermoelectric (TE) devices have been attracting increasing attention because of their ability to co...
In competitive thermoelectric devices for energy conversion and generation, high-efficiency material...
In this paper, we show how the thermoelectric properties can be modified in crystallographic structu...
Bismuth chalcogenides are promising materials for thermoelectric (TE) application due to their high ...
As one of the most important n-type thermoelectric (TE) materials, Bi2Te3 has been studied for decad...
Tuning the electron and phonon transport properties of thermoelectric materials by nanostructuring h...
Good thermoelectric performance is being sought to face major problems related to energy, especially...
The cost-effective conversion of low-grade heat into electricity using thermoelectric devices requir...
We measure gate-tuned thermoelectric power of mechanically exfoliated Bi<sub>2</sub>Se<sub>3</sub> t...
The n‐type semiconductor system Bi2Te3Bi2Se3 is known as a low‐temperature thermoelectric material w...
The cost-effective conversion of low-grade heat into electricity using thermoelectric devices requir...
Seebeck coefficient is determined by the asymmetry of density of states across Fermi level and their...
International audienceβ-As2Te3 belongs to the family of the (Bi,Sb)2X3 (X = Se, Te) alloys, which re...
Taming electronic and thermal transport properties is the ultimate goal in the quest to achieve unpr...