Bismuth telluride is the working material for most Peltier cooling devices and thermoelectric generators. This is because Bi2Te3 (or more precisely its alloys with Sb2Te3 for p-type and Bi2Se3 for n-type material) has the highest thermoelectric figure of merit, zT, of any material around room temperature. Since thermoelectric technology will be greatly enhanced by improving Bi2Te3 or finding a superior material, this review aims to identify and quantify the key material properties that make Bi2Te3 such a good thermoelectric. The large zT can be traced to the high band degeneracy, low effective mass, high carrier mobility, and relatively low lattice thermal conductivity, which all contribute to its remarkably high thermoelectric quality fact...
Thermoelectric compounds based on doped bismuth telluride and its alloys have recently attracted inc...
As one promising low-temperature thermoelectric material, Bi2Te3 suffers from high carrier concentra...
As one promising low-temperature thermoelectric material, Bi2Te3 suffers from high carrier concentra...
Bismuth telluride-based (Bi2Te3) compounds have been attracting considerable attention for the appli...
Thermoelectric materials, enabling the directing conversion between heat and electricity, are one of...
Thermoelectric materials, enabling the directing conversion between heat and electricity, are one of...
Alloying bismuth telluride with antimony telluride and bismuth selenide for p- and n-type materials,...
Thermoelectric materials, enabling the directing conversion between heat and electricity, are one of...
Thermoelectric materials, enabling the directing conversion between heat and electricity, are one of...
Thermoelectric materials, enabling the directing conversion between heat and electricity, are one of...
Thermoelectric materials, enabling the directing conversion between heat and electricity, are one of...
By effectively converting waste heat into electricity, thermoelectric materials and devices can prov...
By effectively converting waste heat into electricity, thermoelectric materials and devices can prov...
Bismuth telluride and its alloys are widely used as materials for thermoelectric refrigeration. They...
Bismuth telluride and its alloys are widely used as materials for thermoelectric refrigeration. They...
Thermoelectric compounds based on doped bismuth telluride and its alloys have recently attracted inc...
As one promising low-temperature thermoelectric material, Bi2Te3 suffers from high carrier concentra...
As one promising low-temperature thermoelectric material, Bi2Te3 suffers from high carrier concentra...
Bismuth telluride-based (Bi2Te3) compounds have been attracting considerable attention for the appli...
Thermoelectric materials, enabling the directing conversion between heat and electricity, are one of...
Thermoelectric materials, enabling the directing conversion between heat and electricity, are one of...
Alloying bismuth telluride with antimony telluride and bismuth selenide for p- and n-type materials,...
Thermoelectric materials, enabling the directing conversion between heat and electricity, are one of...
Thermoelectric materials, enabling the directing conversion between heat and electricity, are one of...
Thermoelectric materials, enabling the directing conversion between heat and electricity, are one of...
Thermoelectric materials, enabling the directing conversion between heat and electricity, are one of...
By effectively converting waste heat into electricity, thermoelectric materials and devices can prov...
By effectively converting waste heat into electricity, thermoelectric materials and devices can prov...
Bismuth telluride and its alloys are widely used as materials for thermoelectric refrigeration. They...
Bismuth telluride and its alloys are widely used as materials for thermoelectric refrigeration. They...
Thermoelectric compounds based on doped bismuth telluride and its alloys have recently attracted inc...
As one promising low-temperature thermoelectric material, Bi2Te3 suffers from high carrier concentra...
As one promising low-temperature thermoelectric material, Bi2Te3 suffers from high carrier concentra...