International audienceA Cu12Sb3.6Bi0.4S10Se3 glass was prepared by melt spinning and crystallized by heat treatments at selected temperatures, the total preparation procedure taking less than one day. The sample characterization by powder X-ray diffraction, scanning and transmission electron microscopy complemented with EDS indicate the formation of compact materials, with a tetrahedrite relative weight fraction higher than 90% when treated at temperatures close to the crystallization peaks (~200º C). Selenium enters the tetrahedrite structure, while bismuth precipitates in submicron and nanosized spherical shape phases depleted in copper and enriched in antimony, sulfur and selenium (when compared with the matrix composition). The characte...
International audienceTetrahedrites are promising p-type thermoelectric materials for energy recover...
International audienceTetrahedrites are promising p-type thermoelectric materials for energy recover...
The purity and structural stability of the high thermoelectric performance Cu12Sb4S13 and Cu10.4Ni1....
International audienceA Cu12Sb3.6Bi0.4S10Se3 glass was prepared by melt spinning and crystallized by...
International audienceA Cu12Sb3.6Bi0.4S10Se3 glass was prepared by melt spinning and crystallized by...
International audienceA Cu12Sb3.6Bi0.4S10Se3 glass was prepared by melt spinning and crystallized by...
International audienceA Cu12Sb3.6Bi0.4S10Se3 glass was prepared by melt spinning and crystallized by...
Thermoelectric materials have attracted much attention due to their potential applications in conver...
Thermoelectric materials, which convert waste heat into electricity, are a potential avenue toward a...
International audienceThe purity and structural stability of the high thermoelectric performance Cu1...
International audienceThe purity and structural stability of the high thermoelectric performance Cu1...
International audienceThe purity and structural stability of the high thermoelectric performance Cu1...
International audienceThe purity and structural stability of the high thermoelectric performance Cu1...
International audienceThe purity and structural stability of the high thermoelectric performance Cu1...
International audienceThe purity and structural stability of the high thermoelectric performance Cu1...
International audienceTetrahedrites are promising p-type thermoelectric materials for energy recover...
International audienceTetrahedrites are promising p-type thermoelectric materials for energy recover...
The purity and structural stability of the high thermoelectric performance Cu12Sb4S13 and Cu10.4Ni1....
International audienceA Cu12Sb3.6Bi0.4S10Se3 glass was prepared by melt spinning and crystallized by...
International audienceA Cu12Sb3.6Bi0.4S10Se3 glass was prepared by melt spinning and crystallized by...
International audienceA Cu12Sb3.6Bi0.4S10Se3 glass was prepared by melt spinning and crystallized by...
International audienceA Cu12Sb3.6Bi0.4S10Se3 glass was prepared by melt spinning and crystallized by...
Thermoelectric materials have attracted much attention due to their potential applications in conver...
Thermoelectric materials, which convert waste heat into electricity, are a potential avenue toward a...
International audienceThe purity and structural stability of the high thermoelectric performance Cu1...
International audienceThe purity and structural stability of the high thermoelectric performance Cu1...
International audienceThe purity and structural stability of the high thermoelectric performance Cu1...
International audienceThe purity and structural stability of the high thermoelectric performance Cu1...
International audienceThe purity and structural stability of the high thermoelectric performance Cu1...
International audienceThe purity and structural stability of the high thermoelectric performance Cu1...
International audienceTetrahedrites are promising p-type thermoelectric materials for energy recover...
International audienceTetrahedrites are promising p-type thermoelectric materials for energy recover...
The purity and structural stability of the high thermoelectric performance Cu12Sb4S13 and Cu10.4Ni1....