We study thermal transport in porous Si nanowires (SiNWs) by means of approach-to-equilibrium molecular dynamics simulations. We show that the presence of pores greatly reduces the thermal conductivity, κ, of the SiNWs as long mean free path phonons are suppressed. We address explicitly the dependence of κ on different features of the pore topology-such as the porosity and the pore diameter-and on the nanowire (NW) geometry-diameter and length. We use the results of the molecular dynamics calculations to tune an effective model, which is capable of capturing the dependence of κ on porosity and NW diameter. The model illustrates the failure of Matthiessen's rule to describe the coupling between boundary and pore scattering, which we account ...
ABSTRACT Although the thermal conductivity of nanoporous materials has been investigated in the past...
Les propriétés thermiques des nanomatériaux offrent une palette variée de comportements. Parfois, le...
Thermal conductivity of thin silicon nanowires (1.4−8.3 nm) including the realistic crystalline stru...
We study thermal transport in porous Si nanowires (SiNWs) by means of approach-to-equilibrium molecu...
Aquest article té una correcció a 10.1038/s41598-018-32320-6Porous materials display enhanced scatte...
By means of molecular dynamics simulations, we have studied heat transport in nanoporous silicon, fi...
Porous materials provide a large surface-to-volume ratio, thereby providing a knob to alter fundamen...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2022, Tutor: ...
The diameter dependence of the thermal conductivity of nanowires is usually modeled using Matthiesse...
We present a Monte Carlo study of heat transport in Si nanomeshes. Phonons are treated semiclassical...
Non-equilibrium molecular dynamics simulations have been applied to study thermal transport properti...
The diameter dependence of the thermal conductivity of nanowires is usually modeled using Matthiesse...
This study establishes that the effective thermal conductivity k eff of crystalline nanopo...
Porous nanowires NWs with tunable thermal conductance are examined as a candidate for thermoelectric...
This study deals with heat transport in crystalline nanostructured silicon and the impact of amorphi...
ABSTRACT Although the thermal conductivity of nanoporous materials has been investigated in the past...
Les propriétés thermiques des nanomatériaux offrent une palette variée de comportements. Parfois, le...
Thermal conductivity of thin silicon nanowires (1.4−8.3 nm) including the realistic crystalline stru...
We study thermal transport in porous Si nanowires (SiNWs) by means of approach-to-equilibrium molecu...
Aquest article té una correcció a 10.1038/s41598-018-32320-6Porous materials display enhanced scatte...
By means of molecular dynamics simulations, we have studied heat transport in nanoporous silicon, fi...
Porous materials provide a large surface-to-volume ratio, thereby providing a knob to alter fundamen...
Treballs Finals de Grau de Física, Facultat de Física, Universitat de Barcelona, Curs: 2022, Tutor: ...
The diameter dependence of the thermal conductivity of nanowires is usually modeled using Matthiesse...
We present a Monte Carlo study of heat transport in Si nanomeshes. Phonons are treated semiclassical...
Non-equilibrium molecular dynamics simulations have been applied to study thermal transport properti...
The diameter dependence of the thermal conductivity of nanowires is usually modeled using Matthiesse...
This study establishes that the effective thermal conductivity k eff of crystalline nanopo...
Porous nanowires NWs with tunable thermal conductance are examined as a candidate for thermoelectric...
This study deals with heat transport in crystalline nanostructured silicon and the impact of amorphi...
ABSTRACT Although the thermal conductivity of nanoporous materials has been investigated in the past...
Les propriétés thermiques des nanomatériaux offrent une palette variée de comportements. Parfois, le...
Thermal conductivity of thin silicon nanowires (1.4−8.3 nm) including the realistic crystalline stru...