In order to understand the effect of Pb-CuI co-doping on the thermoelectric performance of Bi2Te3, n-type Bi2Te3 co-doped with x at % CuI and 1/2x at % Pb (x = 0, 0.01, 0.03, 0.05, 0.07, and 0.10) were prepared via high temperature solid state reaction and consolidated using spark plasma sintering. Electron and thermal transport properties, i.e., electrical conductivity, carrier concentration, Hall mobility, Seebeck coefficient, and thermal conductivity, of CuI-Pb co-doped Bi2Te3 were measured in the temperature range from 300 K to 523 K, and compared to corresponding x% of CuI-doped Bi2Te3 and undoped Bi2Te3. The addition of a small amount of Pb significantly decreased the carrier concentration, which could be attributed to the holes from ...
Bi2Te3-based compounds have long been studied as thermoelectric materials in cooling applications ne...
Bi–Te-based alloys are potential candidates for use in thermoelectric (TE) modules for low-mid-tempe...
AbstractHigh-performance (Bi2Te3)x(Sb2Te3)1−x bulk materials were prepared by combining fusion techn...
In order to understand the effect of Pb-CuI co-doping on the thermoelectric performance of Bi2Te3, n...
P-type Bi2-xSbxTe3 is one of the most mature and widely used thermoelectric (TE) materials. Enhancin...
© 2019 American Chemical Society.The thermoelectric (TE) community has mainly focused on improving t...
Recently, Cu-containing p-type Bi0.5Sb1.5Te3 materials have shown high thermoelectric performances a...
The Bi2Te3, Bi1.9Lu0.1Te3 and Bi1.9Tm0.1Te3 thermoelectrics of n-type conductivity have been prepare...
The majority of industrial, automobile processes, electrical appliances emit waste heat in the low-t...
Bi2Te3-based compounds have received attention as thermoelectric materials for room-temperature cool...
Cation substitutional doping is an effective approach to modifying the electronic and thermal transp...
The high processing cost, poor mechanical properties and moderate performance of Bi2Te3–based alloys...
Bismuth telluride is the working material for most Peltier cooling devices and thermoelectric genera...
Bismuth chalcogenides are promising materials for thermoelectric (TE) application due to their high ...
The substitutional doping approach has been shown to be an effective strategy to improve ZT of Bi2Te...
Bi2Te3-based compounds have long been studied as thermoelectric materials in cooling applications ne...
Bi–Te-based alloys are potential candidates for use in thermoelectric (TE) modules for low-mid-tempe...
AbstractHigh-performance (Bi2Te3)x(Sb2Te3)1−x bulk materials were prepared by combining fusion techn...
In order to understand the effect of Pb-CuI co-doping on the thermoelectric performance of Bi2Te3, n...
P-type Bi2-xSbxTe3 is one of the most mature and widely used thermoelectric (TE) materials. Enhancin...
© 2019 American Chemical Society.The thermoelectric (TE) community has mainly focused on improving t...
Recently, Cu-containing p-type Bi0.5Sb1.5Te3 materials have shown high thermoelectric performances a...
The Bi2Te3, Bi1.9Lu0.1Te3 and Bi1.9Tm0.1Te3 thermoelectrics of n-type conductivity have been prepare...
The majority of industrial, automobile processes, electrical appliances emit waste heat in the low-t...
Bi2Te3-based compounds have received attention as thermoelectric materials for room-temperature cool...
Cation substitutional doping is an effective approach to modifying the electronic and thermal transp...
The high processing cost, poor mechanical properties and moderate performance of Bi2Te3–based alloys...
Bismuth telluride is the working material for most Peltier cooling devices and thermoelectric genera...
Bismuth chalcogenides are promising materials for thermoelectric (TE) application due to their high ...
The substitutional doping approach has been shown to be an effective strategy to improve ZT of Bi2Te...
Bi2Te3-based compounds have long been studied as thermoelectric materials in cooling applications ne...
Bi–Te-based alloys are potential candidates for use in thermoelectric (TE) modules for low-mid-tempe...
AbstractHigh-performance (Bi2Te3)x(Sb2Te3)1−x bulk materials were prepared by combining fusion techn...