The inverse coupled dependence of electrical conductivity and thermopower on carrier concentration presents a big challenge in achieving a high figure of merit. However, the simultaneous enhancement of electrical conductivity and thermopower can be realized in practice by carefully engineering the electronic band structure. Here by taking the example of Bi2S3, we report a simultaneous increase in both electrical conductivity and thermopower under hydrostatic pressure. Application of hydrostatic pressure enables tuning of electronic structure in such a way that the conductivity effective mass decreases and the density of states effective mass increases. This dependence of effective masses leads to simultaneous enhancement in electrical condu...
Bi2Te3 is one of the most promising thermoelectric materials that target near-room-temperature appli...
Thermoelectric transport properties (Seebeck coefficient, S, and electrical conductivity, σ) of p -t...
Thermoelectrics directly converts waste heat into electricity and is considered a promising means of...
The inverse coupled dependence of electrical conductivity and thermopower on carrier concentration p...
Te-free Bi2S3-based thermoelectric materials show great potential for eco-friendly and industrial sc...
The search for new thermoelectric materials is in the direction of maximizing the dimensionless figu...
It has been discussed for a long time that synthetic pressure can effectively optimize thermoelectri...
The demand for a sustainable power supply and management has become increasingly essential with the ...
Bismuth sulfide (Bi2S3) has attracted increasing attention in thermoelectric investigations due to t...
We report the temperature dependence of thermopower (S) in the ab plane of Bi2Sr2Co2O9 {BC-222} sing...
Abstract: Nanostructured Ni doped Bi2S3 (Bi2−xNixS3, 0 ≤ x ≤ 0.07) is explored as a candidate for te...
Bismuth chalcogenides are promising materials for thermoelectric (TE) application due to their high ...
The cost-effective conversion of low-grade heat into electricity using thermoelectric devices requir...
Thermoelectric technology offers great potential for converting waste heat into electrical energy an...
In this paper we present thermopower (TEP) studies on polycrystalline bismuthx2013;antimony (Bix2013...
Bi2Te3 is one of the most promising thermoelectric materials that target near-room-temperature appli...
Thermoelectric transport properties (Seebeck coefficient, S, and electrical conductivity, σ) of p -t...
Thermoelectrics directly converts waste heat into electricity and is considered a promising means of...
The inverse coupled dependence of electrical conductivity and thermopower on carrier concentration p...
Te-free Bi2S3-based thermoelectric materials show great potential for eco-friendly and industrial sc...
The search for new thermoelectric materials is in the direction of maximizing the dimensionless figu...
It has been discussed for a long time that synthetic pressure can effectively optimize thermoelectri...
The demand for a sustainable power supply and management has become increasingly essential with the ...
Bismuth sulfide (Bi2S3) has attracted increasing attention in thermoelectric investigations due to t...
We report the temperature dependence of thermopower (S) in the ab plane of Bi2Sr2Co2O9 {BC-222} sing...
Abstract: Nanostructured Ni doped Bi2S3 (Bi2−xNixS3, 0 ≤ x ≤ 0.07) is explored as a candidate for te...
Bismuth chalcogenides are promising materials for thermoelectric (TE) application due to their high ...
The cost-effective conversion of low-grade heat into electricity using thermoelectric devices requir...
Thermoelectric technology offers great potential for converting waste heat into electrical energy an...
In this paper we present thermopower (TEP) studies on polycrystalline bismuthx2013;antimony (Bix2013...
Bi2Te3 is one of the most promising thermoelectric materials that target near-room-temperature appli...
Thermoelectric transport properties (Seebeck coefficient, S, and electrical conductivity, σ) of p -t...
Thermoelectrics directly converts waste heat into electricity and is considered a promising means of...