International audienceThe purity and structural stability of the high thermoelectric performance Cu12Sb4S13 and Cu10.4Ni1.6Sb4S13 tetrahedrite phases, synthesized by solid-liquid-vapor reaction and Spark Plasma Sintering, were studied at high temperature by Rietveld refinement using high resolution X-ray powder diffraction data, DSC/TG measurements and high resolution transmission electron microscopy. In a complementary study, the crystal structure of Cu10.5Ni1.5Sb4S13 as a function of temperature was investigated by powder neutron diffraction. The temperature dependence of the structural stability of ternary Cu12Sb4S13 is markedly different to that of the nickel-substituted phases, providing clear evidence for the significant and beneficia...
International audienceTetrahedrites are promising p-type thermoelectric materials for energy recover...
Tetrahedrites are promising p-type thermoelectric materials for energy recovery. We present here the...
International audienceTetrahedrites are promising p-type thermoelectric materials for energy recover...
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...
The purity and structural stability of the high thermoelectric performance Cu12Sb4S13 and Cu10.4Ni1....
The purity and structural stability of the high thermoelectric performance Cu12Sb4S13 and Cu10.4Ni1....
The purity and structural stability of the high thermoelectric performance Cu12Sb4S13 and Cu10.4Ni1....
International audienceNatural and synthetic tetrahedrites are currently the focus of attention in th...
International audienceTetrahedrites are promising p-type thermoelectric materials for energy recover...
We have examined the low-temperature crystal structure and thermoelectric properties of unsubstitute...
International audienceTetrahedrites are promising p-type thermoelectric materials for energy recover...
International audienceTetrahedrites are promising p-type thermoelectric materials for energy recover...
Tetrahedrites are promising p-type thermoelectric materials for energy recovery. We present here the...
International audienceTetrahedrites are promising p-type thermoelectric materials for energy recover...
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...
The purity and structural stability of the high thermoelectric performance Cu12Sb4S13 and Cu10.4Ni1....
The purity and structural stability of the high thermoelectric performance Cu12Sb4S13 and Cu10.4Ni1....
The purity and structural stability of the high thermoelectric performance Cu12Sb4S13 and Cu10.4Ni1....
International audienceNatural and synthetic tetrahedrites are currently the focus of attention in th...
International audienceTetrahedrites are promising p-type thermoelectric materials for energy recover...
We have examined the low-temperature crystal structure and thermoelectric properties of unsubstitute...
International audienceTetrahedrites are promising p-type thermoelectric materials for energy recover...
International audienceTetrahedrites are promising p-type thermoelectric materials for energy recover...
Tetrahedrites are promising p-type thermoelectric materials for energy recovery. We present here the...
International audienceTetrahedrites are promising p-type thermoelectric materials for energy recover...