The entanglement of lattice thermal conductivity, electrical conductivity, and Seebeck coefficient complicates the process of optimizing thermoelectric performance in most thermoelectric materials. Semiconductors with ultralow lattice thermal conductivities and high power factors at the same time are scarce but fundamentally interesting and practically important for energy conversion. Herein, an intrinsic p-type semiconductor TlCuSe that has an intrinsically ultralow thermal conductivity (0.25 W m−1 K−1), a high power factor (11.6 µW cm−1 K−2), and a high figure of merit, ZT (1.9) at 643 K is described. The weak chemical bonds, originating from the filled antibonding orbitals p-d* within the edge-sharing CuSe4 tetrahedra and long TlSe bonds...
The efficiency of thermoelectric energy converters is limited by the material thermoelectric figure ...
High Seebeck coefficient by creating large density-of-states effective mass through either electroni...
The thermoelectric transport properties of elemental tellurium are investigated by density functiona...
Semiconducting half and, to a lesser extent, full Heusler compounds are promising thermoelectric mat...
Thermoelectric materials are of imperative need on account of the worldwide energy crisis. However, ...
Thermoelectric devices make it possible for direct energy conversion between heat and electricity. I...
Thermoelectric devices make it possible for direct energy conversion between heat and electricity. I...
Thermoelectric materials, which enable direct conversion between thermal and electrical energy, prov...
Thermoelectric energy conversion efficiency is directly related to the temperature difference over w...
Thermoelectric (TE) materials convert heat energy directly into electricity, and introducing new mat...
We theoretically investigate the thermoelectric properties of semiconducting (gapped) materials by v...
Low bandgap thermoelectric materials suffer from bipolar effects at high temperatures, with increase...
Thermoelectric (TE) materials convert heat energy directly into electricity, and introducing new mat...
We report calculations of the electronic structure, vibrational properties, and transport for the p-...
The efficiency of thermoelectric energy converters is limited by the material thermoelectric figure ...
The efficiency of thermoelectric energy converters is limited by the material thermoelectric figure ...
High Seebeck coefficient by creating large density-of-states effective mass through either electroni...
The thermoelectric transport properties of elemental tellurium are investigated by density functiona...
Semiconducting half and, to a lesser extent, full Heusler compounds are promising thermoelectric mat...
Thermoelectric materials are of imperative need on account of the worldwide energy crisis. However, ...
Thermoelectric devices make it possible for direct energy conversion between heat and electricity. I...
Thermoelectric devices make it possible for direct energy conversion between heat and electricity. I...
Thermoelectric materials, which enable direct conversion between thermal and electrical energy, prov...
Thermoelectric energy conversion efficiency is directly related to the temperature difference over w...
Thermoelectric (TE) materials convert heat energy directly into electricity, and introducing new mat...
We theoretically investigate the thermoelectric properties of semiconducting (gapped) materials by v...
Low bandgap thermoelectric materials suffer from bipolar effects at high temperatures, with increase...
Thermoelectric (TE) materials convert heat energy directly into electricity, and introducing new mat...
We report calculations of the electronic structure, vibrational properties, and transport for the p-...
The efficiency of thermoelectric energy converters is limited by the material thermoelectric figure ...
The efficiency of thermoelectric energy converters is limited by the material thermoelectric figure ...
High Seebeck coefficient by creating large density-of-states effective mass through either electroni...
The thermoelectric transport properties of elemental tellurium are investigated by density functiona...