International audienceCu–Sn-based sulfides are earth-abundant and nontoxic compounds of special interest for low-cost energy harvesting applications. In the present work, we have investigated the effect of grain size on the thermoelectric properties of Cu2SnS3 (CTS). Three dense CTS samples with nanometric grains were produced by mechanical alloying combined with spark plasma sintering, preserving the small size of crystalline domains to 12, 25, and 37 nm, respectively. The experimental results show that the Seebeck coefficient (S) and electrical resistivity (ρ) decrease with decreasing domain sizes, while the thermal conductivity (κ) increases. A smaller domain size correlates with a lower resistivity and a degenerate semiconductor-like be...
Équipe 103 : Composés intermétalliques et matériaux hybridesInternational audienceThis paper describ...
International audienceCopper-based chalcogenides with tetrahedral framework structures have been att...
Discovery of novel high-performance materials with earth-abundant and environmentally friendly eleme...
International audienceCu–Sn-based sulfides are earth-abundant and nontoxic compounds of special inte...
Cu$_2$SnS$_3$ (CTS) is a medium-temperature, ecofriendly, p-type thermoelectric material known for p...
Heavily acceptor-doped Cu2SnS3 (CTS) shows promisingly large power factor (PF) due to its rather hig...
In the present work, we have investigated the effect of Cu content (x) on the phase structure and th...
Due to the eco-friendly and earth-abundant features, p-type Cu3SbS4-based sulfides have shown great ...
International audienceIn recent years, thermoelectric materials inspired from the natural mineral co...
The presence of high crystallographic symmetry and nanoscale defects are favorable for thermoelectri...
Équipe 103 : Composés intermétalliques et matériaux hybridesInternational audienceThis paper describ...
International audienceCopper-based chalcogenides with tetrahedral framework structures have been att...
Discovery of novel high-performance materials with earth-abundant and environmentally friendly eleme...
International audienceCu–Sn-based sulfides are earth-abundant and nontoxic compounds of special inte...
Cu$_2$SnS$_3$ (CTS) is a medium-temperature, ecofriendly, p-type thermoelectric material known for p...
Heavily acceptor-doped Cu2SnS3 (CTS) shows promisingly large power factor (PF) due to its rather hig...
In the present work, we have investigated the effect of Cu content (x) on the phase structure and th...
Due to the eco-friendly and earth-abundant features, p-type Cu3SbS4-based sulfides have shown great ...
International audienceIn recent years, thermoelectric materials inspired from the natural mineral co...
The presence of high crystallographic symmetry and nanoscale defects are favorable for thermoelectri...
Équipe 103 : Composés intermétalliques et matériaux hybridesInternational audienceThis paper describ...
International audienceCopper-based chalcogenides with tetrahedral framework structures have been att...
Discovery of novel high-performance materials with earth-abundant and environmentally friendly eleme...