Surface functionalization of substrates is a promising strategy to tune thermal transport in supported graphene. In this work, we have conducted molecular dynamics simulations to investigate how the surface hydroxylation of amorphous SiO2 substrate affects heat conduction in supported graphene. The results show that the thermal conductivity of supported graphene is decreased by introducing hydroxyl groups on the substrate surface. The underlying physics of thermal conductivity suppression is explained by analyzing the phonon spectral energy density, lifetime, and participation ratio. We have observed that the surface hydroxylation decreases the phonon lifetime and causes remarkable damping of out-of-plane flexural phonons. Moreover, the hyd...
Graphene has been actively investigated because its unique structural, electronic, and thermal prope...
Thermal conductivity kappa of both suspended and supported graphene has been studied by using molecu...
The effect of Joule heating on graphene electronic properties is investigated by self-consistent use...
The thermal conductivity (kappa) of graphene dramatically decreases once supported on a substrate, h...
Thermal transport is critical in engineering system design, as it directly affects the stability, du...
We compute thermal conductivity of graphene oxide at room temperature with molecular dynamics simula...
The high thermal conductivity of graphene and few-layer graphene undergoes severe degradations throu...
International audienceThe reported thermal conductivity (κ) of suspended graphene, 3000 to 5000 watt...
The thermal transport properties of graphene are strongly influenced by its contact environment and ...
The incorporation of graphitic compounds such as carbon nanotubes (CNTs) and graphene into nano-elec...
CNPQ - CONSELHO NACIONAL DE DESENVOLVIMENTO CIENTÍFICO E TECNOLÓGICOFAPESP - FUNDAÇÃO DE AMPARO À PE...
The reported thermal conductivity (kappa) of suspended graphene, 3000 to 5000 watts per meter per ke...
International audienceWe report the layer-number dependence of the averaged interlayer thermal resis...
We have performed molecular dynamics simulations with phonon spectral analysis to predict the mode-w...
We studied the heat-spreading enhancement of supported few-layer graphene by inserting silane-functi...
Graphene has been actively investigated because its unique structural, electronic, and thermal prope...
Thermal conductivity kappa of both suspended and supported graphene has been studied by using molecu...
The effect of Joule heating on graphene electronic properties is investigated by self-consistent use...
The thermal conductivity (kappa) of graphene dramatically decreases once supported on a substrate, h...
Thermal transport is critical in engineering system design, as it directly affects the stability, du...
We compute thermal conductivity of graphene oxide at room temperature with molecular dynamics simula...
The high thermal conductivity of graphene and few-layer graphene undergoes severe degradations throu...
International audienceThe reported thermal conductivity (κ) of suspended graphene, 3000 to 5000 watt...
The thermal transport properties of graphene are strongly influenced by its contact environment and ...
The incorporation of graphitic compounds such as carbon nanotubes (CNTs) and graphene into nano-elec...
CNPQ - CONSELHO NACIONAL DE DESENVOLVIMENTO CIENTÍFICO E TECNOLÓGICOFAPESP - FUNDAÇÃO DE AMPARO À PE...
The reported thermal conductivity (kappa) of suspended graphene, 3000 to 5000 watts per meter per ke...
International audienceWe report the layer-number dependence of the averaged interlayer thermal resis...
We have performed molecular dynamics simulations with phonon spectral analysis to predict the mode-w...
We studied the heat-spreading enhancement of supported few-layer graphene by inserting silane-functi...
Graphene has been actively investigated because its unique structural, electronic, and thermal prope...
Thermal conductivity kappa of both suspended and supported graphene has been studied by using molecu...
The effect of Joule heating on graphene electronic properties is investigated by self-consistent use...