S and Te-doped Cu2SnSe3 samples with chemical formula of Cu2SnSe3-xSx and Cu2SnSe3-xTex (x = 0.05, 0.10, 0.15, 0.20) are prepared, and the effect of S and Te-doping on thermoelectric properties is investigated. In all the samples, the Cu2SnSe3 phase is synthesized as the major product, and its lattice parameters decrease with S-doping but increase with Te-doping. EDS analysis confirms the incorporation of S and Te dopants in the Cu2SnSe3 phase, and reveals an element segregation in the Te-doped samples. S- and Te-doping decreases the electrical conductivity, enhance the Seebeck coefficient, and reduce the thermal conductivity. S-doping is effective to improve the ZT of Cu2SnSe3, and the Cu2SnSe3-xSx sample with x = 0.05 shows a ZT of 0.66 a...
In this study, we, for the first time, report a high Cu solubility of 11.8% in single crystal SnSe m...
In addition to eco friendliness and low raw material cost, Cu2S0.5Se0.5 exhibits promising middle to...
<p>The ternary chalcogenide of Cu3SbSe4 is demonstrated to be a novel p-type thermoelectric material...
The effect of Sb doping on the thermoelectric properties of Cu2SnSe3 was investigated. The Cu2Sn1-xS...
Cu2+xSnSe3 (0 <= x <= 0.08) compounds were synthesized by conventional solid-state reaction followed...
Zn doped ternary compounds Cu2ZnxSn1-xSe3 (x = 0, 0.025, 0.05, 0.075) were prepared by solid state s...
Tin selenide (SnSe) based thermoelectric materials are being explored for making inexpensive and eff...
The presence of high crystallographic symmetry and nanoscale defects are favorable for thermoelectri...
The low temperature thermoelectric properties of TiSe2, co-doped with Cu and S, are reported. Partia...
Thermoelectric (TE) materials are a kind of energy material which can directly convert waste heat in...
Polycrystalline Sn1-xCuxSe samples have been prepared using hot pressing to study the Cu doping effe...
Sulphur doping effects on the crystal structures, thermoelectric properties, density-of-states, and ...
Understanding the impact of dopants can direct the design of high-performance thermoelectric nanomat...
Binary Cu2Se and Cu2Te have gained great attention recently because of their interesting and abnorma...
Understanding the impact of dopants can direct the design of high-performance thermoelectric nanomat...
In this study, we, for the first time, report a high Cu solubility of 11.8% in single crystal SnSe m...
In addition to eco friendliness and low raw material cost, Cu2S0.5Se0.5 exhibits promising middle to...
<p>The ternary chalcogenide of Cu3SbSe4 is demonstrated to be a novel p-type thermoelectric material...
The effect of Sb doping on the thermoelectric properties of Cu2SnSe3 was investigated. The Cu2Sn1-xS...
Cu2+xSnSe3 (0 <= x <= 0.08) compounds were synthesized by conventional solid-state reaction followed...
Zn doped ternary compounds Cu2ZnxSn1-xSe3 (x = 0, 0.025, 0.05, 0.075) were prepared by solid state s...
Tin selenide (SnSe) based thermoelectric materials are being explored for making inexpensive and eff...
The presence of high crystallographic symmetry and nanoscale defects are favorable for thermoelectri...
The low temperature thermoelectric properties of TiSe2, co-doped with Cu and S, are reported. Partia...
Thermoelectric (TE) materials are a kind of energy material which can directly convert waste heat in...
Polycrystalline Sn1-xCuxSe samples have been prepared using hot pressing to study the Cu doping effe...
Sulphur doping effects on the crystal structures, thermoelectric properties, density-of-states, and ...
Understanding the impact of dopants can direct the design of high-performance thermoelectric nanomat...
Binary Cu2Se and Cu2Te have gained great attention recently because of their interesting and abnorma...
Understanding the impact of dopants can direct the design of high-performance thermoelectric nanomat...
In this study, we, for the first time, report a high Cu solubility of 11.8% in single crystal SnSe m...
In addition to eco friendliness and low raw material cost, Cu2S0.5Se0.5 exhibits promising middle to...
<p>The ternary chalcogenide of Cu3SbSe4 is demonstrated to be a novel p-type thermoelectric material...