Nanophononic metamaterials have broad applications in fields such as heat management, thermoelectric energy conversion, and nanoelectronics. Phonon resonance in pillared low-dimensional structures has been suggested to be a feasible approach to reduce thermal conductivity (TC). In this work, we study the effects of imperfections in pillared nanostructures based on graphene nanoribbons (GNR), using classical molecular dynamics simulations and harmonic lattice dynamics. The TC of perfect pillared GNR is only about 13% of that of pristine GNR due to the strong phonon resonant hybridization in pillared GNR. However, introducing imperfections such as vacancy defects and mass mismatch between the pillars and the base material, and alloy disorder ...
Equilibrium molecular dynamics simulations show that graphene nanoribbons (GNRs) with zigzag edges h...
Equilibrium molecular dynamics simulations show that graphene nanoribbons (GNRs) with zigzag edges h...
Tensile strain and compress strain can greatly affect the thermal conductivity of graphene nanoribbo...
Supplementary files for article: Anomalous thermal conductivity enhancement in low dimensional reson...
We study the interaction between localized vibrational modes and propagating phonons in graphene nan...
We investigate the thermal conductance of one-dimensional periodic width-modulated graphene nanoribb...
Equilibrium molecular dynamics simulation using 2nd generation Reactive Bond Order interatomic poten...
Classical molecular dynamics with the AIREBO potential is used to investigate and compare the therma...
Classical molecular dynamics with the AIREBO potential is used to investigate and compare the therma...
Classical molecular dynamics with the AIREBO potential is used to investigate the thermal conductivi...
Classical molecular dynamics with the AIREBO potential is used to investigate the thermal conductivi...
The transport regime a particular phonon mode is in is dependent on its mean free path relative to t...
The pillared-graphene architecture is a conceivable way of conjoining graphene nanoribbons and carbo...
We investigate the influence of low dimensionality and disorder in phonon transport in ultranarrow a...
International audienceThe anomalous thermal conductivity enhancement by defects in resonant structur...
Equilibrium molecular dynamics simulations show that graphene nanoribbons (GNRs) with zigzag edges h...
Equilibrium molecular dynamics simulations show that graphene nanoribbons (GNRs) with zigzag edges h...
Tensile strain and compress strain can greatly affect the thermal conductivity of graphene nanoribbo...
Supplementary files for article: Anomalous thermal conductivity enhancement in low dimensional reson...
We study the interaction between localized vibrational modes and propagating phonons in graphene nan...
We investigate the thermal conductance of one-dimensional periodic width-modulated graphene nanoribb...
Equilibrium molecular dynamics simulation using 2nd generation Reactive Bond Order interatomic poten...
Classical molecular dynamics with the AIREBO potential is used to investigate and compare the therma...
Classical molecular dynamics with the AIREBO potential is used to investigate and compare the therma...
Classical molecular dynamics with the AIREBO potential is used to investigate the thermal conductivi...
Classical molecular dynamics with the AIREBO potential is used to investigate the thermal conductivi...
The transport regime a particular phonon mode is in is dependent on its mean free path relative to t...
The pillared-graphene architecture is a conceivable way of conjoining graphene nanoribbons and carbo...
We investigate the influence of low dimensionality and disorder in phonon transport in ultranarrow a...
International audienceThe anomalous thermal conductivity enhancement by defects in resonant structur...
Equilibrium molecular dynamics simulations show that graphene nanoribbons (GNRs) with zigzag edges h...
Equilibrium molecular dynamics simulations show that graphene nanoribbons (GNRs) with zigzag edges h...
Tensile strain and compress strain can greatly affect the thermal conductivity of graphene nanoribbo...