International audienceIn this work, we present our attempt to improve the thermoelectric performance of melt-spun (MS) Sb2−x Bi x Te3+y samples densified by spark plasma sintering (SPS) through two different methods: (1) alignment of the MS ribbons in the SPS die; (2) repetitive SPS sintering. A microstructural study of the dense samples was performed by scanning electron microscopy supported by x-ray diffraction analyses. The thermoelectric and galvanomagnetic properties were measured in the direction perpendicular to the uniaxial pressing direction of SPS. Alignment of the ribbons gives rise to improved thermoelectric performances with an increase of up to 26% with respect to the reference sample, yielding a peak dimensionless figure of m...
Narrow bandgap thermoelectric materials based on bismuth-telluride exhibit bipolar conduction that i...
Characterization of powder-metallurgically manufactured (Bix Sb1−x )2(Tey Se1−y )3thermoelectric mat...
In this work, Bi0.5Sb1.5Te3 materials were produced by an economically viable and time efficient wat...
In order to realize high-performance thermoelectric materials, a way to obtain small grain size is n...
International audienceThree kinds of Sb1.6Bi0.4Te3.1 samples were prepared by the melt-spinning tech...
AbstractHigh-performance (Bi2Te3)x(Sb2Te3)1−x bulk materials were prepared by combining fusion techn...
As a field-assisted technique, spark plasma sintering (SPS) enables densification of specimens in a ...
V-Vl thermoelectric compounds like Bi2Te3-based alloys are well known for room temperature applicati...
The widespread application of thermoelectric (TE) technology demands high-performance materials, whi...
Melt-spinning (MS) has been reported as a promising tool to tailor the microstructure of bulk thermo...
Bi2Te3−xSex alloys are extensively used for thermoelectric cooling around room temperature, but, pre...
Narrow bandgap thermoelectric materials based on bismuth-telluride exhibit bipolar conduction that i...
The mechanical properties of bismuth telluride based thermoelectric materials have received much les...
Spark Plasma Sintering (SPS) is used for the fabrication of wafers of n- and p-type thermoelectric V...
The mechanical properties of bismuth telluride based thermoelectric materials have received much les...
Narrow bandgap thermoelectric materials based on bismuth-telluride exhibit bipolar conduction that i...
Characterization of powder-metallurgically manufactured (Bix Sb1−x )2(Tey Se1−y )3thermoelectric mat...
In this work, Bi0.5Sb1.5Te3 materials were produced by an economically viable and time efficient wat...
In order to realize high-performance thermoelectric materials, a way to obtain small grain size is n...
International audienceThree kinds of Sb1.6Bi0.4Te3.1 samples were prepared by the melt-spinning tech...
AbstractHigh-performance (Bi2Te3)x(Sb2Te3)1−x bulk materials were prepared by combining fusion techn...
As a field-assisted technique, spark plasma sintering (SPS) enables densification of specimens in a ...
V-Vl thermoelectric compounds like Bi2Te3-based alloys are well known for room temperature applicati...
The widespread application of thermoelectric (TE) technology demands high-performance materials, whi...
Melt-spinning (MS) has been reported as a promising tool to tailor the microstructure of bulk thermo...
Bi2Te3−xSex alloys are extensively used for thermoelectric cooling around room temperature, but, pre...
Narrow bandgap thermoelectric materials based on bismuth-telluride exhibit bipolar conduction that i...
The mechanical properties of bismuth telluride based thermoelectric materials have received much les...
Spark Plasma Sintering (SPS) is used for the fabrication of wafers of n- and p-type thermoelectric V...
The mechanical properties of bismuth telluride based thermoelectric materials have received much les...
Narrow bandgap thermoelectric materials based on bismuth-telluride exhibit bipolar conduction that i...
Characterization of powder-metallurgically manufactured (Bix Sb1−x )2(Tey Se1−y )3thermoelectric mat...
In this work, Bi0.5Sb1.5Te3 materials were produced by an economically viable and time efficient wat...