International audienceUsing nonequilibrium molecular dynamic simulations, the thermal conductivity of a set of Si phononic metamaterial nanowires with a twinning superlattice structure has been investigated. We first show that this latter structural modulation can yield 65% thermal-conductivity reduction compared to the straight wire case at room temperature. Second, a purely geometry-induced minimal thermal conductivity of the phononic metamaterial is observed at a specific period depending on the nanowire diameter. Mode analysis reveals that the the minimal thermal conductivity arises due to the disappearance of favored atom polarization directions. The current thermal-conductivity reduction mechanism can collaborate with the other known ...
Controlling the thermal conductivity of a material independent of its electrical conductivity is a g...
Nanoengineering has revolutionized the development of new thermoelectric materials in recent decades...
This thesis focus on the effect of nanostructuring, i.e., nanowires, grain disorder, grain size, int...
International audienceUsing nonequilibrium molecular dynamic simulations, the thermal conductivity o...
ABSTRACT: The engineering of nanostructured materials with very low thermal conductivity is a necess...
Understanding the design rules to obtain materials that enable a tight control of phonon transport o...
International audienceSemiconductor nanowires are potential building blocks for future thermoelectri...
Thermal conductivity of thin silicon nanowires (1.4−8.3 nm) including the realistic crystalline stru...
hhThe thermal conductance of straight and corrugated monocrystalline silicon nanowires has been meas...
Solid-state energy conversion technologies such as thermoelectric and thermionic refrigeration and p...
Thermal transport in silicon nanowires has captured the attention of scientists for understanding ph...
Semiconductor nanostructures hold great promise for high-efficiency waste-heat recovery exploiting t...
Modulation of Thermal Conductivity in kinked Silicon Nanowires: Phonon interchanging and pinching ef...
Thermal transport in silicon nanowires has captured the attention of scientists for understanding ph...
Thermoelectrics enable solid-state conversion of heat to electricity by the Seebeck effect, but must...
Controlling the thermal conductivity of a material independent of its electrical conductivity is a g...
Nanoengineering has revolutionized the development of new thermoelectric materials in recent decades...
This thesis focus on the effect of nanostructuring, i.e., nanowires, grain disorder, grain size, int...
International audienceUsing nonequilibrium molecular dynamic simulations, the thermal conductivity o...
ABSTRACT: The engineering of nanostructured materials with very low thermal conductivity is a necess...
Understanding the design rules to obtain materials that enable a tight control of phonon transport o...
International audienceSemiconductor nanowires are potential building blocks for future thermoelectri...
Thermal conductivity of thin silicon nanowires (1.4−8.3 nm) including the realistic crystalline stru...
hhThe thermal conductance of straight and corrugated monocrystalline silicon nanowires has been meas...
Solid-state energy conversion technologies such as thermoelectric and thermionic refrigeration and p...
Thermal transport in silicon nanowires has captured the attention of scientists for understanding ph...
Semiconductor nanostructures hold great promise for high-efficiency waste-heat recovery exploiting t...
Modulation of Thermal Conductivity in kinked Silicon Nanowires: Phonon interchanging and pinching ef...
Thermal transport in silicon nanowires has captured the attention of scientists for understanding ph...
Thermoelectrics enable solid-state conversion of heat to electricity by the Seebeck effect, but must...
Controlling the thermal conductivity of a material independent of its electrical conductivity is a g...
Nanoengineering has revolutionized the development of new thermoelectric materials in recent decades...
This thesis focus on the effect of nanostructuring, i.e., nanowires, grain disorder, grain size, int...