The relations between the thermal conductivity of cagelike structures and their crystal parameters are investigated using a two-dimensional toy model. The model consists of host atoms on a rectangular lattice with fillers at the center of each rectangle. The effect of mass and size of the filler on thermal conductivity is investigated using equilibrium molecular-dynamics simulations. We show that the thermal conductivity decreases with increasing atomic displacement parameter while it has local minima versus the filler to host mass ratio. Similar trends were observed in experiments on filled skutterudites. The trends are explained by analyzing the effect of the filler on the phonon dispersion and relaxation times of the host material.United...
An analysis of thermal transients from non-equilibrium ab initio molecular-dynamics simulations can ...
An analysis of thermal transients from non-equilibrium ab initio molecular-dynamics simulations can ...
Thermal conductivity is a key parameter in designing high performance thermoelectric materials. A mu...
A two dimensional toy model is developed to study thermal transport in cage like structures such a s...
For the past decade interest in skutterudites has been significant as a potentially viable material ...
The Einstein model of a solid usually lacks a clear illustration in introductory solid-state physics...
The Einstein model of a solid usually lacks a clear illustration in introductory solid-state physics...
The influence of guest atoms on thermal conduction in filled skutterudites was studied using ultrafa...
The phonon conductivities of CoSb 3 and its Ba-filled structure Ba x(CoSb 3) 4 are investigated usin...
In recent years, skutterudites have attracted huge attention and are reckoned to be one of the most ...
Atomic-level thermal transport is explored using lattice dynamics theory and molecular dynamics (MD)...
Atomic-level thermal transport is explored using lattice dynamics theory and molecular dynamics (MD)...
submitted to Journal of Heat TransferThe thermal conductivity of nanometric objects or nanostructure...
We predict the bulk thermal conductivity of Lennard-Jones argon and Stillinger-Weber silicon using t...
Partially filled skutterudites were investigated by ultrafast spectroscopy using a femtosecond laser...
An analysis of thermal transients from non-equilibrium ab initio molecular-dynamics simulations can ...
An analysis of thermal transients from non-equilibrium ab initio molecular-dynamics simulations can ...
Thermal conductivity is a key parameter in designing high performance thermoelectric materials. A mu...
A two dimensional toy model is developed to study thermal transport in cage like structures such a s...
For the past decade interest in skutterudites has been significant as a potentially viable material ...
The Einstein model of a solid usually lacks a clear illustration in introductory solid-state physics...
The Einstein model of a solid usually lacks a clear illustration in introductory solid-state physics...
The influence of guest atoms on thermal conduction in filled skutterudites was studied using ultrafa...
The phonon conductivities of CoSb 3 and its Ba-filled structure Ba x(CoSb 3) 4 are investigated usin...
In recent years, skutterudites have attracted huge attention and are reckoned to be one of the most ...
Atomic-level thermal transport is explored using lattice dynamics theory and molecular dynamics (MD)...
Atomic-level thermal transport is explored using lattice dynamics theory and molecular dynamics (MD)...
submitted to Journal of Heat TransferThe thermal conductivity of nanometric objects or nanostructure...
We predict the bulk thermal conductivity of Lennard-Jones argon and Stillinger-Weber silicon using t...
Partially filled skutterudites were investigated by ultrafast spectroscopy using a femtosecond laser...
An analysis of thermal transients from non-equilibrium ab initio molecular-dynamics simulations can ...
An analysis of thermal transients from non-equilibrium ab initio molecular-dynamics simulations can ...
Thermal conductivity is a key parameter in designing high performance thermoelectric materials. A mu...