International audiencePerfectly crystalline solids are excellent heat conductors. Prominent counterexamples are intermetallic clathrates, guest-host systems with a high potential for thermoelectric applications due to their ultralow thermal conductivities. Our combined experimental and theoretical investigation of the lattice dynamics of a particularly simple binary representative, Ba 8 Si 46 , identifies the mechanism responsible for the reduction of lattice thermal conductivity intrinsic to the perfect crystal structure. Above a critical wave vector, the purely harmonic guest-host interaction leads to a drastic transfer of spectral weight to the guest atoms, corresponding to a localization of the propagative phonons
The figure of merit of thermoelectric materials can be increased by suppressing the lattice thermal ...
The phenomenon of thermoelectric energy conversion holds great promise in harvesting wasted heat and...
International audienceOne of the key requirements for good thermoelectric materials is a low lattice...
International audiencePerfectly crystalline solids are excellent heat conductors. Prominent countere...
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 ...
The low and glasslike thermal conductivity of metal-doped semiconductor clathrate compounds makes th...
International audienceWe investigate the role of interatomic forces beyond the nearest neighbors on ...
The low and glasslike thermal conductivity of metal-doped semiconductor clathrate compounds makes t...
Energy conversion from waste heat to electric power is a promising approach for energy harvest, and ...
International audienceAn Engineering lattice thermal conductivity requires to control the heat carri...
International audienceThe low lattice thermal conductivity in inorganic clathrates has been shown re...
Engineering lattice thermal conductivity requires to control the heat carried by atomic vibration wa...
The theory of anharmonic three-phonon interactions predicts an expression for the mean free path of ...
As a generic property, all substances transfer heat through microscopic collisions of constituent pa...
The figure of merit of thermoelectric materials can be increased by suppressing the lattice thermal ...
The phenomenon of thermoelectric energy conversion holds great promise in harvesting wasted heat and...
International audienceOne of the key requirements for good thermoelectric materials is a low lattice...
International audiencePerfectly crystalline solids are excellent heat conductors. Prominent countere...
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 ...
The low and glasslike thermal conductivity of metal-doped semiconductor clathrate compounds makes th...
International audienceWe investigate the role of interatomic forces beyond the nearest neighbors on ...
The low and glasslike thermal conductivity of metal-doped semiconductor clathrate compounds makes t...
Energy conversion from waste heat to electric power is a promising approach for energy harvest, and ...
International audienceAn Engineering lattice thermal conductivity requires to control the heat carri...
International audienceThe low lattice thermal conductivity in inorganic clathrates has been shown re...
Engineering lattice thermal conductivity requires to control the heat carried by atomic vibration wa...
The theory of anharmonic three-phonon interactions predicts an expression for the mean free path of ...
As a generic property, all substances transfer heat through microscopic collisions of constituent pa...
The figure of merit of thermoelectric materials can be increased by suppressing the lattice thermal ...
The phenomenon of thermoelectric energy conversion holds great promise in harvesting wasted heat and...
International audienceOne of the key requirements for good thermoelectric materials is a low lattice...