The thermoelectric transport properties of graphyne nanotubes (GNTs) are investigated by using the nonequilibrium Green’s function (NEGF) method, as implemented in the density functional based tight-binding (DFTB) framework. We find that both the band gap and thermoelectric figure of merit ZT show a damped oscillation with the tube diameter increased. Sign changes can be observed for the Seebeck coefficient, as the absolute value of the chemical potential increased, which is attributed to the minibands formation in the GNTs. In addition, the thermoelectric performance is reduced due to hydrogenation. Unexpectedly, the phonon thermal conductance of one of the hydrogenated GNTs is maintained, which is due to the counteraction of the surface r...
The ability to manipulate material response to dynamical processes depends on the extent of understa...
The thermoelectric properties of zigzag graphene nanoribbons (ZGNRs) are sensitive to chemical modif...
We utilize molecular-dynamics simulations to report the first investigation of energy dissipation of...
Thermal conductivity and phonon transport properties of graphyne nanotubes (GNTs) and conventional c...
We have studied the electrical and thermal properties of single wall carbon nanotubes (SWNTs) both a...
We have studied the electrical and thermal properties of single wall carbon nanotubes (SWNTs) both a...
As the fast development of nanotechnology and further industrial applications, theoretical investiga...
In view of the experimental breakthrough and unique geometric structure, through using the nonequili...
In this work, we study the carrier transport properties of three non-graphitic armchair nanotubes (o...
We study the thermal transport in completely unzipped carbon nanotubes, which are called graphene na...
The waste heat generated by car engines, power plants, home furnaces and other fossil fuel-burning m...
The emergence of new carbon-based nanomaterials, like carbon nanotubes and graphene, in the past dec...
Graphyne is an allotrope of graphene containing both sp and sp2 hybridized carbon atoms. In this pap...
This talk will present recent highlights from our studies at the intersection of energy, nanomateria...
Nanotubes have recently been experimentally demonstrated to be perfect phonon waveguides. To explore...
The ability to manipulate material response to dynamical processes depends on the extent of understa...
The thermoelectric properties of zigzag graphene nanoribbons (ZGNRs) are sensitive to chemical modif...
We utilize molecular-dynamics simulations to report the first investigation of energy dissipation of...
Thermal conductivity and phonon transport properties of graphyne nanotubes (GNTs) and conventional c...
We have studied the electrical and thermal properties of single wall carbon nanotubes (SWNTs) both a...
We have studied the electrical and thermal properties of single wall carbon nanotubes (SWNTs) both a...
As the fast development of nanotechnology and further industrial applications, theoretical investiga...
In view of the experimental breakthrough and unique geometric structure, through using the nonequili...
In this work, we study the carrier transport properties of three non-graphitic armchair nanotubes (o...
We study the thermal transport in completely unzipped carbon nanotubes, which are called graphene na...
The waste heat generated by car engines, power plants, home furnaces and other fossil fuel-burning m...
The emergence of new carbon-based nanomaterials, like carbon nanotubes and graphene, in the past dec...
Graphyne is an allotrope of graphene containing both sp and sp2 hybridized carbon atoms. In this pap...
This talk will present recent highlights from our studies at the intersection of energy, nanomateria...
Nanotubes have recently been experimentally demonstrated to be perfect phonon waveguides. To explore...
The ability to manipulate material response to dynamical processes depends on the extent of understa...
The thermoelectric properties of zigzag graphene nanoribbons (ZGNRs) are sensitive to chemical modif...
We utilize molecular-dynamics simulations to report the first investigation of energy dissipation of...