Polycrystalline Mn1-xCuxTe (x = 0, 0.025, 0.05, 0.075) thermoelectric materials were prepared by a combined method of melt-quenching and hot press. The effect of Cu doping on the electrical resistivity, band gap, the Seebeck coefficient and thermal conductivity was investigated. The power factors of the Cu-doped samples increase greatly due to the decrease of electrical resistivity and the higher Seebeck coefficient in high temperatures. In addition, the thermal conductivities of the Cu-doped samples also reduce due to the extra phonon scattering from the point defects introduced by Cu doping. As a result, the thermoelectric performance of MnTe is greatly enhanced, and a maximum ZT value of ∼0.55 in the Mn0.925Cu0.075Te sample at 773 K is a...
The well converged transporting valence bands in SnTe-MnTe alloys ensures a superior electronic perf...
Binary Cu2Se and Cu2Te have gained great attention recently because of their interesting and abnorma...
To achieve the optimized performance and the widespread application of thermoelectric materials, it ...
AbstractPolycrystalline Mn1-xCuxTe (x = 0, 0.025, 0.05, 0.075) thermoelectric materials were prepare...
Here, a new route is proposed for the minimization of lattice thermal conductivity in MnTe through c...
Semiconducting manganese ditelluride (MnTe2) crystalizes in a high symmetry cubic structure with suf...
With the same crystal structure and a similar band structure, SnTe is regarded as an eco-friendly al...
BiCuSeO is a promising thermoelectric material having earth-abundant non-toxic constituents and favo...
Polycrystalline Sn1-xCuxSe samples have been prepared using hot pressing to study the Cu doping effe...
Cu3Ga5Te9-based compounds Cu3-xGa5MnxTe9 (x=0-0.2) with Mn substitution for Cu have been synthesized...
We demonstrate a high solubility limit of >9 mol% for MnTe alloying in SnTe. The electrical conducti...
Abstract Cu1.8S has been considered as a potential thermoelectric (TE) material for its stable elect...
Cu2Te-based materials are a type of superionic conductor belonging to the class of phonon-liquid ele...
Copper telluride belongs to the �Phonon Liquid Electron Crystal� (PLEC) class of materials owing...
Cu2Te is a superionic conductor that belongs to the Phonon Liquid Electron Crystal class of thermoel...
The well converged transporting valence bands in SnTe-MnTe alloys ensures a superior electronic perf...
Binary Cu2Se and Cu2Te have gained great attention recently because of their interesting and abnorma...
To achieve the optimized performance and the widespread application of thermoelectric materials, it ...
AbstractPolycrystalline Mn1-xCuxTe (x = 0, 0.025, 0.05, 0.075) thermoelectric materials were prepare...
Here, a new route is proposed for the minimization of lattice thermal conductivity in MnTe through c...
Semiconducting manganese ditelluride (MnTe2) crystalizes in a high symmetry cubic structure with suf...
With the same crystal structure and a similar band structure, SnTe is regarded as an eco-friendly al...
BiCuSeO is a promising thermoelectric material having earth-abundant non-toxic constituents and favo...
Polycrystalline Sn1-xCuxSe samples have been prepared using hot pressing to study the Cu doping effe...
Cu3Ga5Te9-based compounds Cu3-xGa5MnxTe9 (x=0-0.2) with Mn substitution for Cu have been synthesized...
We demonstrate a high solubility limit of >9 mol% for MnTe alloying in SnTe. The electrical conducti...
Abstract Cu1.8S has been considered as a potential thermoelectric (TE) material for its stable elect...
Cu2Te-based materials are a type of superionic conductor belonging to the class of phonon-liquid ele...
Copper telluride belongs to the �Phonon Liquid Electron Crystal� (PLEC) class of materials owing...
Cu2Te is a superionic conductor that belongs to the Phonon Liquid Electron Crystal class of thermoel...
The well converged transporting valence bands in SnTe-MnTe alloys ensures a superior electronic perf...
Binary Cu2Se and Cu2Te have gained great attention recently because of their interesting and abnorma...
To achieve the optimized performance and the widespread application of thermoelectric materials, it ...