Tetrahedrites are promising p-type thermoelectric materials for energy recovery. We present here the first investigation of the structure and thermoelectric properties of copper-rich tetrahedrites, Cu12+xSb4S13 (0 0 consist of two tetrahedrite phases. In-situ neutron diffraction data demonstrate that on heating, the two tetrahedrite phases coalesce into a single tetrahedrite phase at temperatures between 493 and 553 K, and that this transition shows marked hysteresis on cooling. Our structural data indicate that copper ions become mobile above 393 K. Marked changes in the temperature dependence of the electrical and thermal transport properties of the copper-rich phases occur at the onset of copper mobility. Excess copper leads to a signif...
The new thermoelectric material BiOCuTe exhibits an electrical conductivity of 224 S cm-1 and a Seeb...
The ability of thermoelectric devices to convert waste heat into useful electrical power has stimula...
We have examined the low-temperature crystal structure and thermoelectric properties of unsubstitute...
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...
Tetrahedrites are promising <i>p</i>-type thermoelectric materials for energy recovery. We present h...
The crystal structure of the tetrahedrites Cu12-xMnxSb4S13 (x = 0, 1) has been studied by powder neu...
Équipe 103 : Composés intermétalliques et matériaux hybridesInternational audienceThe ability of som...
The thermoelectric performance of the p-type semiconductor bornite, Cu5FeS4, is greatly enhanced thr...
Kesterite-related phases have attracted considerable interest as earth-abundant photovoltaic and the...
Tetrahedrite, Cu12Sb4S13, is an abundant mineral with excellent thermoelectric properties owing to i...
The thermoelectric behaviour of the transition-metal disulphides n-type NiCr2S4 and p-type CuCrS2 is...
Tetrahedrite with general chemical formula [(Cu,Ag)10(Zn,Fe)2(Sb,As)4S13] are a family of natural m...
Synthetic copper sulfides have emerged as promising non-toxic and low-cost materials for thermoelect...
Les matériaux tétraédrites de formule chimique [(Cu,Ag)10(Zn,Fe)2(Sb,As)4S13] sont des roches nature...
The new thermoelectric material BiOCuTe exhibits an electrical conductivity of 224 S cm-1 and a Seeb...
The ability of thermoelectric devices to convert waste heat into useful electrical power has stimula...
We have examined the low-temperature crystal structure and thermoelectric properties of unsubstitute...
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...
Tetrahedrites are promising <i>p</i>-type thermoelectric materials for energy recovery. We present h...
The crystal structure of the tetrahedrites Cu12-xMnxSb4S13 (x = 0, 1) has been studied by powder neu...
Équipe 103 : Composés intermétalliques et matériaux hybridesInternational audienceThe ability of som...
The thermoelectric performance of the p-type semiconductor bornite, Cu5FeS4, is greatly enhanced thr...
Kesterite-related phases have attracted considerable interest as earth-abundant photovoltaic and the...
Tetrahedrite, Cu12Sb4S13, is an abundant mineral with excellent thermoelectric properties owing to i...
The thermoelectric behaviour of the transition-metal disulphides n-type NiCr2S4 and p-type CuCrS2 is...
Tetrahedrite with general chemical formula [(Cu,Ag)10(Zn,Fe)2(Sb,As)4S13] are a family of natural m...
Synthetic copper sulfides have emerged as promising non-toxic and low-cost materials for thermoelect...
Les matériaux tétraédrites de formule chimique [(Cu,Ag)10(Zn,Fe)2(Sb,As)4S13] sont des roches nature...
The new thermoelectric material BiOCuTe exhibits an electrical conductivity of 224 S cm-1 and a Seeb...
The ability of thermoelectric devices to convert waste heat into useful electrical power has stimula...
We have examined the low-temperature crystal structure and thermoelectric properties of unsubstitute...