Various theoretical and experimental methods are utilized to investigate the thermal conductivity of nanostructured materials; this is a critical parameter to increase performance of thermoelectric devices. Among these methods, equilibrium molecular dynamics (EMD) is an accurate technique to predict lattice thermal conductivity. In this study, by means of systematic EMD simulations, thermal conductivity of bulk Si-Ge structures (pristine, alloy and superlattice) and their nanostructured one dimensional forms with square and circular cross-section geometries (asymmetric and symmetric) are calculated for different crystallographic directions. A comprehensive temperature analysis is evaluated for selected structures as well. The results show t...
Approach-to-equilibrium molecular dynamics have been utilized to investigate the thermal transport i...
We calculate the lattice thermal conductivity in model Si_(1−x)Ge_x nanocomposites by molecular dyna...
We investigate the parametrization and optimization of thermal conductivity in silicon-germanium all...
Various theoretical and experimental methods are utilized to investigate the thermal conductivity of...
ABSTRACT: The engineering of nanostructured materials with very low thermal conductivity is a necess...
Low-dimensional nanostructured materials show large variation in their thermal transport properties....
Low-dimensional nanostructured materials show large variation in their thermal transport properties....
Low-dimensional nanostructured materials show large variations in their thermal transport properties...
Low-dimensional nanostructured materials show large variations in their thermal transport properties...
This thesis focus on the effect of nanostructuring, i.e., nanowires, grain disorder, grain size, int...
This thesis focus on the effect of nanostructuring, i.e., nanowires, grain disorder, grain size, int...
We calculate the lattice thermal conductivity in model Si$_{1-x}$Ge$_x$ nanocomposites by molecular ...
Approach-to-equilibrium molecular dynamics have been utilized to investigate the thermal transport i...
We calculate the lattice thermal conductivity in model Si$_{1-x}$Ge$_x$ nanocomposites by molecular ...
Approach-to-equilibrium molecular dynamics have been utilized to investigate the thermal transport i...
Approach-to-equilibrium molecular dynamics have been utilized to investigate the thermal transport i...
We calculate the lattice thermal conductivity in model Si_(1−x)Ge_x nanocomposites by molecular dyna...
We investigate the parametrization and optimization of thermal conductivity in silicon-germanium all...
Various theoretical and experimental methods are utilized to investigate the thermal conductivity of...
ABSTRACT: The engineering of nanostructured materials with very low thermal conductivity is a necess...
Low-dimensional nanostructured materials show large variation in their thermal transport properties....
Low-dimensional nanostructured materials show large variation in their thermal transport properties....
Low-dimensional nanostructured materials show large variations in their thermal transport properties...
Low-dimensional nanostructured materials show large variations in their thermal transport properties...
This thesis focus on the effect of nanostructuring, i.e., nanowires, grain disorder, grain size, int...
This thesis focus on the effect of nanostructuring, i.e., nanowires, grain disorder, grain size, int...
We calculate the lattice thermal conductivity in model Si$_{1-x}$Ge$_x$ nanocomposites by molecular ...
Approach-to-equilibrium molecular dynamics have been utilized to investigate the thermal transport i...
We calculate the lattice thermal conductivity in model Si$_{1-x}$Ge$_x$ nanocomposites by molecular ...
Approach-to-equilibrium molecular dynamics have been utilized to investigate the thermal transport i...
Approach-to-equilibrium molecular dynamics have been utilized to investigate the thermal transport i...
We calculate the lattice thermal conductivity in model Si_(1−x)Ge_x nanocomposites by molecular dyna...
We investigate the parametrization and optimization of thermal conductivity in silicon-germanium all...