In semiconductors almost all heat is conducted by phonons (lattice vibrations), which is limited by their quasi-particle lifetimes. Phonon-phonon interactions represent scattering mechanisms that produce thermal resistance. In thermoelectric materials, this resistance due to anharmonicity should be maximised for optimal performance. We use a first-principles lattice-dynamics approach to explore the changes in lattice dynamics across an isostructural series where the average atomic mass is conserved: ZnS to CuGaS2 to Cu2ZnGeS4. Our results demonstrate an enhancement of phonon interactions in the multernary materials and confirm that lattice thermal conductivity can be controlled independently of the average mass and local coordination enviro...
Processing influences many aspects of thermal and electrical transport properties in materials. Non-...
Advanced materials with extreme thermal conductivity are critically important for various technologi...
Advanced materials with extreme thermal conductivity are critically important for various technologi...
In semiconductors almost all heat is conducted by phonons (lattice vibrations), which is limited by ...
In semiconductors almost all heat is conducted by phonons (lattice vibrations), which is limited by ...
Thermoelectric materials, which enable direct conversion between thermal and electrical energy, prov...
In this study, using the first-principles based atomistic simulations, we address tuning of the atom...
The electron-phonon interaction is well known to create major resistance to electron transport in me...
SnSe-based materials possess ultrahigh thermoelectric efficiency and show great potential in next-ge...
This paper has been accepted for publication in Electronic, Photonic, Plasmonic, Phononic and Magnet...
Tin sulfide (SnS) and tin selenide (SnSe) are attractive materials for thermoelectric conversion app...
The layered semiconductor SnSe is one of the highest-performing thermoelectric materials known. We d...
Mitigation of the global energy crisis requires tailoring the thermal conductivity of materials. Low...
Ternary pnictide semiconductors with II–IV–V2 stoichiometry hold potential as cost-effective thermoe...
In this work, we discover anomalously low lattice thermal conductivity (<0.25 W/mK at 300 °C) in the...
Processing influences many aspects of thermal and electrical transport properties in materials. Non-...
Advanced materials with extreme thermal conductivity are critically important for various technologi...
Advanced materials with extreme thermal conductivity are critically important for various technologi...
In semiconductors almost all heat is conducted by phonons (lattice vibrations), which is limited by ...
In semiconductors almost all heat is conducted by phonons (lattice vibrations), which is limited by ...
Thermoelectric materials, which enable direct conversion between thermal and electrical energy, prov...
In this study, using the first-principles based atomistic simulations, we address tuning of the atom...
The electron-phonon interaction is well known to create major resistance to electron transport in me...
SnSe-based materials possess ultrahigh thermoelectric efficiency and show great potential in next-ge...
This paper has been accepted for publication in Electronic, Photonic, Plasmonic, Phononic and Magnet...
Tin sulfide (SnS) and tin selenide (SnSe) are attractive materials for thermoelectric conversion app...
The layered semiconductor SnSe is one of the highest-performing thermoelectric materials known. We d...
Mitigation of the global energy crisis requires tailoring the thermal conductivity of materials. Low...
Ternary pnictide semiconductors with II–IV–V2 stoichiometry hold potential as cost-effective thermoe...
In this work, we discover anomalously low lattice thermal conductivity (<0.25 W/mK at 300 °C) in the...
Processing influences many aspects of thermal and electrical transport properties in materials. Non-...
Advanced materials with extreme thermal conductivity are critically important for various technologi...
Advanced materials with extreme thermal conductivity are critically important for various technologi...