International audienceBulk p and n-type bismuth tellurides were prepared using spark plasma texturization method. The texture development along the uniaxial load in the 001 direction is confirmed from both x-ray diffraction analysis and electron backscattering diffraction measurements. Interestingly, those textured samples outperform the samples prepared by conventional spark plasma sintering (SPS) leading to a reduced thermal conductivity in the ab-plane. The textured samples of n-type BiTe2.7Se0.3 and p-type Bi0.5Sb1.5Te3 showed a 42% and 33% enhancement in figure of merit at room temperature, respectively, as compared to their SPS counterparts, opening the route for applications
Uniform polycrystalline bismuth telluride (BiTe) nanowires of diameter 100 nm to 150 nm and hexagona...
Features in thermoelectric properties of non-textured and textured Bi1.9Gd0.1Te3 compounds are analy...
P-type Bi2-xSbxTe3 is one of the most mature and widely used thermoelectric (TE) materials. Enhancin...
International audienceBulk p and n-type bismuth tellurides were prepared using spark plasma texturiz...
peer reviewedBulk p and n-type bismuth tellurides were prepared using spark plasma texturization met...
Spark Plasma Sintering (SPS) is used for the fabrication of wafers of n- and p-type thermoelectric V...
AbstractHigh-performance (Bi2Te3)x(Sb2Te3)1−x bulk materials were prepared by combining fusion techn...
The widespread application of thermoelectric (TE) technology demands high-performance materials, whi...
The mechanical properties of bismuth telluride based thermoelectric materials have received much les...
The mechanical properties of bismuth telluride based thermoelectric materials have received much les...
V-Vl thermoelectric compounds like Bi2Te3-based alloys are well known for room temperature applicati...
Properties of Spark Plasma Sintered (SPS) and Hot Isostatically Pressed (HIP) n- and p-type tellurid...
In this work, Bi0.5Sb1.5Te3 materials were produced by an economically viable and time efficient wat...
Thermoelectric devices provide the means for direct conversion between heat and electricity. The dev...
As a field-assisted technique, spark plasma sintering (SPS) enables densification of specimens in a ...
Uniform polycrystalline bismuth telluride (BiTe) nanowires of diameter 100 nm to 150 nm and hexagona...
Features in thermoelectric properties of non-textured and textured Bi1.9Gd0.1Te3 compounds are analy...
P-type Bi2-xSbxTe3 is one of the most mature and widely used thermoelectric (TE) materials. Enhancin...
International audienceBulk p and n-type bismuth tellurides were prepared using spark plasma texturiz...
peer reviewedBulk p and n-type bismuth tellurides were prepared using spark plasma texturization met...
Spark Plasma Sintering (SPS) is used for the fabrication of wafers of n- and p-type thermoelectric V...
AbstractHigh-performance (Bi2Te3)x(Sb2Te3)1−x bulk materials were prepared by combining fusion techn...
The widespread application of thermoelectric (TE) technology demands high-performance materials, whi...
The mechanical properties of bismuth telluride based thermoelectric materials have received much les...
The mechanical properties of bismuth telluride based thermoelectric materials have received much les...
V-Vl thermoelectric compounds like Bi2Te3-based alloys are well known for room temperature applicati...
Properties of Spark Plasma Sintered (SPS) and Hot Isostatically Pressed (HIP) n- and p-type tellurid...
In this work, Bi0.5Sb1.5Te3 materials were produced by an economically viable and time efficient wat...
Thermoelectric devices provide the means for direct conversion between heat and electricity. The dev...
As a field-assisted technique, spark plasma sintering (SPS) enables densification of specimens in a ...
Uniform polycrystalline bismuth telluride (BiTe) nanowires of diameter 100 nm to 150 nm and hexagona...
Features in thermoelectric properties of non-textured and textured Bi1.9Gd0.1Te3 compounds are analy...
P-type Bi2-xSbxTe3 is one of the most mature and widely used thermoelectric (TE) materials. Enhancin...