In competitive thermoelectric devices for energy conversion and generation, high-efficiency materials of both n-type and p-type are required. For this, Bi2Te3-based alloys have the best thermoelectric properties in room temperature applications. Partial replacement of tellurium by selenium is expected to introduce new donor states in the band gap, which would alter electrical conductivity and thermopower. We report on the preparation of n-type Bi2(Te1-xSex)3 solid solutions by a straightforward arc-melting technique, yielding nanostructured polycrystalline pellets. X-ray and neutron powder diffraction was used to assess Se inclusion, also indicating that the interactions between quintuple layers constituting this material are weakened upon ...
Thermoelectric (TE) materials convert thermal energy into electrical energy, and vice versa. Bismuth...
Amount of Bi2Se3 has significant role in controlling thermoelectric properties of n-type Bi-2(TeSe)(...
As one promising low-temperature thermoelectric material, Bi2Te3 suffers from high carrier concentra...
The cost-effective conversion of low-grade heat into electricity using thermoelectric devices requir...
The cost-effective conversion of low-grade heat into electricity using thermoelectric devices requir...
The field of thermoelectrics has displayed great potentiality as one of the viable technologies for ...
The n‐type semiconductor system Bi2Te3Bi2Se3 is known as a low‐temperature thermoelectric material w...
We report an improved thermoelectric performance of n-type Bi2Se3 bulk alloys synthesized by vacuum ...
Thermoelectric materials constitute an alternative source of sustainable energy, harvested from wast...
Sb-doped BiTe is known since the 1950s as the best thermoelectric material for near-room temperature...
We report on the enhanced thermoelectric properties of selenium (Se) doped bismuth telluride (Bi2Te3...
A bismuth tellurium selenide (Bi2TeySe3-y) nanocompound for thermoelectric applications was successf...
In this work, a novel low-temperature double solvent sol-gel method was used to fabricate (Sm, Ce, G...
Large-scale Bi2Se3 nanosheets with controllable thickness have been synthesized by a microwave-assis...
Large-scale Bi2Se3 nanosheets with controllable thickness have been synthesized by a microwave-assis...
Thermoelectric (TE) materials convert thermal energy into electrical energy, and vice versa. Bismuth...
Amount of Bi2Se3 has significant role in controlling thermoelectric properties of n-type Bi-2(TeSe)(...
As one promising low-temperature thermoelectric material, Bi2Te3 suffers from high carrier concentra...
The cost-effective conversion of low-grade heat into electricity using thermoelectric devices requir...
The cost-effective conversion of low-grade heat into electricity using thermoelectric devices requir...
The field of thermoelectrics has displayed great potentiality as one of the viable technologies for ...
The n‐type semiconductor system Bi2Te3Bi2Se3 is known as a low‐temperature thermoelectric material w...
We report an improved thermoelectric performance of n-type Bi2Se3 bulk alloys synthesized by vacuum ...
Thermoelectric materials constitute an alternative source of sustainable energy, harvested from wast...
Sb-doped BiTe is known since the 1950s as the best thermoelectric material for near-room temperature...
We report on the enhanced thermoelectric properties of selenium (Se) doped bismuth telluride (Bi2Te3...
A bismuth tellurium selenide (Bi2TeySe3-y) nanocompound for thermoelectric applications was successf...
In this work, a novel low-temperature double solvent sol-gel method was used to fabricate (Sm, Ce, G...
Large-scale Bi2Se3 nanosheets with controllable thickness have been synthesized by a microwave-assis...
Large-scale Bi2Se3 nanosheets with controllable thickness have been synthesized by a microwave-assis...
Thermoelectric (TE) materials convert thermal energy into electrical energy, and vice versa. Bismuth...
Amount of Bi2Se3 has significant role in controlling thermoelectric properties of n-type Bi-2(TeSe)(...
As one promising low-temperature thermoelectric material, Bi2Te3 suffers from high carrier concentra...