Many thermoelectric materials are multicomponent systems that exhibit chemical ordering, which can affect both thermodynamic and transport properties. Here, we address the coupling between order and thermoelectric performance in the case of a prototypical inorganic clathrate (Ba<sub>8</sub>Ga<sub>16</sub>Ge<sub>30</sub>) using a combination of density functional and Boltzmann transport theory as well as alloy cluster expansions and Monte Carlo simulations. The calculations describe the experimentally observed site occupancy factors and reproduce experimental data for the transport coefficients. By inverting the cluster expansion, we demonstrate that the power factor can be increased by more than 60% for certain chemical ordering patterns th...
Thermoelectric materials, which enable direct conversion between thermal and electrical energy, prov...
Ordering phenomena in materials often have a crucial impact on materials properties. They are govern...
peer reviewedBy a combination of semi-analytical Boltzmann transport and first-principles calculatio...
Many thermoelectric materials are multicomponent systems that exhibit chemical ordering, which can a...
Many thermoelectric materials are multicomponent systems that exhibit chemical ordering, which can a...
Thermoelectric phenomena couple thermal and electric currents, allowing for solid-state conversion o...
While alloying is a powerful handle for materials engineering, it is an ongoing challenge to navigat...
Thermoelectric materials enable the direct conversion between a thermal gradient and an electrical p...
Inorganic clathrates have been extensively investigated owing to their unique and intriguing atomic ...
The rapid increase in thermoelectric (TE) materials R&D is a consequence of the growing need to incr...
Inorganic semiconductors are important materials for devices used every day. One property that is cr...
rst elastic constants, sound velocity, and Debye temperature using the density functional theory wit...
Understanding and manipulation of the band structure are important in designing high-performance the...
AbstractUnderstanding and manipulation of the band structure are important in designing high-perform...
Recent discovery of a high thermoelectric figure of merit in n-type SnSe single crystal stimulates f...
Thermoelectric materials, which enable direct conversion between thermal and electrical energy, prov...
Ordering phenomena in materials often have a crucial impact on materials properties. They are govern...
peer reviewedBy a combination of semi-analytical Boltzmann transport and first-principles calculatio...
Many thermoelectric materials are multicomponent systems that exhibit chemical ordering, which can a...
Many thermoelectric materials are multicomponent systems that exhibit chemical ordering, which can a...
Thermoelectric phenomena couple thermal and electric currents, allowing for solid-state conversion o...
While alloying is a powerful handle for materials engineering, it is an ongoing challenge to navigat...
Thermoelectric materials enable the direct conversion between a thermal gradient and an electrical p...
Inorganic clathrates have been extensively investigated owing to their unique and intriguing atomic ...
The rapid increase in thermoelectric (TE) materials R&D is a consequence of the growing need to incr...
Inorganic semiconductors are important materials for devices used every day. One property that is cr...
rst elastic constants, sound velocity, and Debye temperature using the density functional theory wit...
Understanding and manipulation of the band structure are important in designing high-performance the...
AbstractUnderstanding and manipulation of the band structure are important in designing high-perform...
Recent discovery of a high thermoelectric figure of merit in n-type SnSe single crystal stimulates f...
Thermoelectric materials, which enable direct conversion between thermal and electrical energy, prov...
Ordering phenomena in materials often have a crucial impact on materials properties. They are govern...
peer reviewedBy a combination of semi-analytical Boltzmann transport and first-principles calculatio...