We report the lattice thermal conductivity (κ) of cubic boron nitride (c-BN) under pressure calculated using density functional theory. Pressure was used to manipulate the c-BN phonon dispersion and study its effect on thermal conductivity. These results were compared to c-BN’s mass-equivalent, nonpolar counterpart, diamond, in order to isolate the effect of polar bonds on thermal conductivity. Unlike diamond, the variation of κ at room temperature (κRT) with applied pressure in c-BN is nonlinear in the low pressure regime followed by a transition to a linear regime with a distinct change in the slope at P > 114 GPa. We find that the change in κ with pressure cannot be described with power law expressions commonly used for Earth mantle mate...
In most compounds, a roughly linear rise in thermal conductivity (k) with pressure (P) is observed. ...
To achieve seamless heat dissipation, it is essential to use materials with high thermal conductivit...
The ability to manipulate material response to dynamical processes depends on the extent of understa...
In this letter we report the theoretical study of the effect of isotopic purity on the temperature d...
International audienceWe present results establishing a new high pressure scale at high temperature ...
58th European High Pressure Research Group Meeting, 9-11, september 2020, Puerto de la Cruz,Tenerife...
The equation of state of cubic boron nitride (cBN) has been determined to a maximum temperature of 3...
High thermal conductivity electronic components with low interfacial thermal resistance are of techn...
We investigate the thermal transport properties of NbN by considering three-phonon scattering (3ph),...
International audienceWe investigate the highly anisotropic behavior of the in-plane and out-of-plan...
The fact that hexagonal boron nitride (h-BN) has remarkable thermal transport property, mechanical p...
A6. Computational Study on Nanoscale Materials: Materials Properties - paper no. A6-26Lattice compon...
The electrical resistances of ~-rhombohedraloand tetragonal polycrystall ine boron were measured at ...
High-thermal conductivity materials are useful for thermal management applications and fundamental s...
In this study, the phonon thermal transport in monolayer C3N under biaxial strains rang-ing from 0% ...
In most compounds, a roughly linear rise in thermal conductivity (k) with pressure (P) is observed. ...
To achieve seamless heat dissipation, it is essential to use materials with high thermal conductivit...
The ability to manipulate material response to dynamical processes depends on the extent of understa...
In this letter we report the theoretical study of the effect of isotopic purity on the temperature d...
International audienceWe present results establishing a new high pressure scale at high temperature ...
58th European High Pressure Research Group Meeting, 9-11, september 2020, Puerto de la Cruz,Tenerife...
The equation of state of cubic boron nitride (cBN) has been determined to a maximum temperature of 3...
High thermal conductivity electronic components with low interfacial thermal resistance are of techn...
We investigate the thermal transport properties of NbN by considering three-phonon scattering (3ph),...
International audienceWe investigate the highly anisotropic behavior of the in-plane and out-of-plan...
The fact that hexagonal boron nitride (h-BN) has remarkable thermal transport property, mechanical p...
A6. Computational Study on Nanoscale Materials: Materials Properties - paper no. A6-26Lattice compon...
The electrical resistances of ~-rhombohedraloand tetragonal polycrystall ine boron were measured at ...
High-thermal conductivity materials are useful for thermal management applications and fundamental s...
In this study, the phonon thermal transport in monolayer C3N under biaxial strains rang-ing from 0% ...
In most compounds, a roughly linear rise in thermal conductivity (k) with pressure (P) is observed. ...
To achieve seamless heat dissipation, it is essential to use materials with high thermal conductivit...
The ability to manipulate material response to dynamical processes depends on the extent of understa...