In this study, γ-Al2O3 particles were dispersed in p-type Bi0.4Sb1.6Te3 through mechanical alloying to form γ-Al2O3/Bi0.4Sb1.6Te3 composite powders. The composite powders were consolidated using vacuum hot pressing to produce nano- and microstructured composites. Thermoelectric (TE) measurements indicated that adding an optimal amount of γ-Al2O3 nanoparticles improves the TE performance of the fabricated composites. High TE performances with figure of merit (ZT) values as high as 1.22 and 1.21 were achieved at 373 and 398 K for samples containing 1 and 3 wt % γ-Al2O3 nanoparticles, respectively. These ZT values are higher than those of monolithic Bi0.4Sb1.6Te3 samples. The ZT values of the fabricated samples at 298–423 K are 1.0–1.22; these...
The figure of merit (zT) of a thermoelectric material can be enhanced by incorporation of nanoinclus...
Research into materials that have high efficiencies of thermoelectric heat-energy conversion has bee...
In this article, we perform a preliminary study for assembling micro-size thermoelectric devices wit...
In this study, γ-Al2O3 particles were dispersed in p-type Bi0.4Sb1.6Te3 through mechanical alloying ...
Bismuth-antimony (Bi100-xSbx) alloys have the highest thermoelectric figure of merit of all n-type t...
Bi2Te3-based alloys are the best thermoelectric materials for near room temperature applications. Ho...
Engineering of thermoelectric materials through hybridization with nanoparticles has been proved eff...
Thesis advisor: Zhifeng RenSolid-state cooling and power generation based on thermoelectric effects ...
An increasing number of studies have reported producing composite structures by combining thermoelec...
Constructing a nanocomposite to introduce a coherent interface is an effective way to improve the pr...
An increasing number of studies have reported producing composite structures by combining thermoelec...
An increasing number of studies have reported producing composite structures by combining thermoelec...
An increasing number of studies have reported producing composite structures by combining thermoelec...
We investigated the particle size-dependent thermoelectric properties of conventional p-type Bi0.5Sb...
The figure of merit (zT) of a thermoelectric material can be enhanced by incorporation of nanoinclus...
The figure of merit (zT) of a thermoelectric material can be enhanced by incorporation of nanoinclus...
Research into materials that have high efficiencies of thermoelectric heat-energy conversion has bee...
In this article, we perform a preliminary study for assembling micro-size thermoelectric devices wit...
In this study, γ-Al2O3 particles were dispersed in p-type Bi0.4Sb1.6Te3 through mechanical alloying ...
Bismuth-antimony (Bi100-xSbx) alloys have the highest thermoelectric figure of merit of all n-type t...
Bi2Te3-based alloys are the best thermoelectric materials for near room temperature applications. Ho...
Engineering of thermoelectric materials through hybridization with nanoparticles has been proved eff...
Thesis advisor: Zhifeng RenSolid-state cooling and power generation based on thermoelectric effects ...
An increasing number of studies have reported producing composite structures by combining thermoelec...
Constructing a nanocomposite to introduce a coherent interface is an effective way to improve the pr...
An increasing number of studies have reported producing composite structures by combining thermoelec...
An increasing number of studies have reported producing composite structures by combining thermoelec...
An increasing number of studies have reported producing composite structures by combining thermoelec...
We investigated the particle size-dependent thermoelectric properties of conventional p-type Bi0.5Sb...
The figure of merit (zT) of a thermoelectric material can be enhanced by incorporation of nanoinclus...
The figure of merit (zT) of a thermoelectric material can be enhanced by incorporation of nanoinclus...
Research into materials that have high efficiencies of thermoelectric heat-energy conversion has bee...
In this article, we perform a preliminary study for assembling micro-size thermoelectric devices wit...