Polycrystalline samples of copper intercalated Cux TiS1.5Se 0.5 (x = 0, 0.025, 0.05 and 0.1) are synthesized by classical high temperature reaction. The resulting powders are successfully densified by using spark plasma sintering. As expected, XRD refinements show that Cu intercalation between TiS1.5Se 0.5 slabs induces an increase in the c lattice parameter. Electrical resistivity and Seebeck coefficient decrease drastically with increasing Cu content, direct consequence of the increased carrier concentration. In parallel, the lattice thermal conductivity of CuxTiS1.5Se 0.5 is significantly reduced compared to unfilled TiS1.5Se 0.5. Overall, the dimensionless thermoelectric figure of merit increases with temperature and reaches a maximum v...
The low temperature thermoelectric properties of TiSe2, co-doped with Cu and S, are reported. Partia...
International audiencePolycrystalline samples in the series AgxTiS2 with x varying from 0 to 0.2 wer...
Superionic CuSe-based thermoelectric materials have attracted extensive attention in recent years du...
International audiencePolycrystalline samples of copper intercalated Cux TiS1.5Se 0.5 (x = 0, 0.025,...
Cu2+xSnSe3 (0 <= x <= 0.08) compounds were synthesized by conventional solid-state reaction followed...
This study addresses the effect of anisotropy on the electrical and thermal properties of CuxTiS2 co...
Cu2-xS and Cu2-xSe have recently been reported as promising thermoelectric (TE) materials for medium...
Binary Cu2Se and Cu2Te have gained great attention recently because of their interesting and abnorma...
Superionic CuSe has attracted extensive research interest as a promising thermoelectric material wit...
In the last decade, high-performance CuSe thermoelectric materials and devices are attracting increa...
We herein report an enhancement of the thermoelectric performance of spark plasma sintered polycryst...
Carrier transport engineering in bulk semiconductors using inclusion phases often results in the det...
Quaternary chalcogenide Cu2CdSnSe4 distributed with ex-situ homogeneous nanoinclusions has been synt...
The compound CuxTiSe2 exhibits superconducting behavior due to Cu intercalated into the TiSe2 van de...
The low temperature thermoelectric properties of TiSe2, co-doped with Cu and S, are reported. Partia...
International audiencePolycrystalline samples in the series AgxTiS2 with x varying from 0 to 0.2 wer...
Superionic CuSe-based thermoelectric materials have attracted extensive attention in recent years du...
International audiencePolycrystalline samples of copper intercalated Cux TiS1.5Se 0.5 (x = 0, 0.025,...
Cu2+xSnSe3 (0 <= x <= 0.08) compounds were synthesized by conventional solid-state reaction followed...
This study addresses the effect of anisotropy on the electrical and thermal properties of CuxTiS2 co...
Cu2-xS and Cu2-xSe have recently been reported as promising thermoelectric (TE) materials for medium...
Binary Cu2Se and Cu2Te have gained great attention recently because of their interesting and abnorma...
Superionic CuSe has attracted extensive research interest as a promising thermoelectric material wit...
In the last decade, high-performance CuSe thermoelectric materials and devices are attracting increa...
We herein report an enhancement of the thermoelectric performance of spark plasma sintered polycryst...
Carrier transport engineering in bulk semiconductors using inclusion phases often results in the det...
Quaternary chalcogenide Cu2CdSnSe4 distributed with ex-situ homogeneous nanoinclusions has been synt...
The compound CuxTiSe2 exhibits superconducting behavior due to Cu intercalated into the TiSe2 van de...
The low temperature thermoelectric properties of TiSe2, co-doped with Cu and S, are reported. Partia...
International audiencePolycrystalline samples in the series AgxTiS2 with x varying from 0 to 0.2 wer...
Superionic CuSe-based thermoelectric materials have attracted extensive attention in recent years du...