Cu3Ga5Te9-based compounds Cu3-xGa5MnxTe9 (x=0-0.2) with Mn substitution for Cu have been synthesized. The engineered energy gap (∆EA) between impurity and valence band is reduced from 44.4 meV at x=0 to 25.7 meV at x=0.1, which is directly responsible for the reduction of potential barrier for thermal excitation of carriers and enhancement in carrier concentration. However, the Seebeck coefficient shows an increasing tendency with the increasing of determined Hall carrier concentration (n). This anomalous behavior suggests that the Pisarenko plots under assumed effective masses do not fit the current relationship between the Seebeck coefficient and carrier density. With the combination of enhanced electrical conductivities and reduced therm...
Polycrystalline Mn1-xCuxTe (x = 0, 0.025, 0.05, 0.075) thermoelectric materials were prepared by a c...
The entanglement of lattice thermal conductivity, electrical conductivity, and Seebeck coefficient c...
With the same crystal structure and a similar band structure, SnTe is regarded as an eco-friendly al...
Copper vacancy concentration (Vc) in ternary Cu–In–Te chalcogenides is an important factor to engine...
Thermoelectric materials are of imperative need on account of the worldwide energy crisis. However, ...
AbstractPolycrystalline Mn1-xCuxTe (x = 0, 0.025, 0.05, 0.075) thermoelectric materials were prepare...
Controlling the chemical and physical structure at the atomic level is of paramount importance for d...
In this work we have observed the beneficial effect from the solid solution formation on the thermoe...
Improving the thermoelectric (TE) performance of Cu3SnS4 is challenging because it exhibits a metall...
Most ternary Cu‐In‐Te chalcogenides have large bandgaps and high Seebeck coefficients, hence they ha...
Here, a new route is proposed for the minimization of lattice thermal conductivity in MnTe through c...
Recently synthesized thermoelectric Cu-As-Te glasses have been analyzed by X-ray absorption spectros...
The temperature-dependent evolution of heavy-hole valence band contribution to the Seebeck coefficie...
In this study, we, for the first time, report a high Cu solubility of 11.8% in single crystal SnSe m...
In this work, we have investigated the band structures of ternary Cu4Sn7+xS16 (x = 0–1.0) compounds ...
Polycrystalline Mn1-xCuxTe (x = 0, 0.025, 0.05, 0.075) thermoelectric materials were prepared by a c...
The entanglement of lattice thermal conductivity, electrical conductivity, and Seebeck coefficient c...
With the same crystal structure and a similar band structure, SnTe is regarded as an eco-friendly al...
Copper vacancy concentration (Vc) in ternary Cu–In–Te chalcogenides is an important factor to engine...
Thermoelectric materials are of imperative need on account of the worldwide energy crisis. However, ...
AbstractPolycrystalline Mn1-xCuxTe (x = 0, 0.025, 0.05, 0.075) thermoelectric materials were prepare...
Controlling the chemical and physical structure at the atomic level is of paramount importance for d...
In this work we have observed the beneficial effect from the solid solution formation on the thermoe...
Improving the thermoelectric (TE) performance of Cu3SnS4 is challenging because it exhibits a metall...
Most ternary Cu‐In‐Te chalcogenides have large bandgaps and high Seebeck coefficients, hence they ha...
Here, a new route is proposed for the minimization of lattice thermal conductivity in MnTe through c...
Recently synthesized thermoelectric Cu-As-Te glasses have been analyzed by X-ray absorption spectros...
The temperature-dependent evolution of heavy-hole valence band contribution to the Seebeck coefficie...
In this study, we, for the first time, report a high Cu solubility of 11.8% in single crystal SnSe m...
In this work, we have investigated the band structures of ternary Cu4Sn7+xS16 (x = 0–1.0) compounds ...
Polycrystalline Mn1-xCuxTe (x = 0, 0.025, 0.05, 0.075) thermoelectric materials were prepared by a c...
The entanglement of lattice thermal conductivity, electrical conductivity, and Seebeck coefficient c...
With the same crystal structure and a similar band structure, SnTe is regarded as an eco-friendly al...