The study of nanostructures’ vibrational properties is at the core of nanoscience research. They are known to represent a fingerprint of the system as well as to hint the underlying nature of chemical bonds. In this work, we focus on addressing how the vibrational density of states (VDOS) of the carbon fullerene family (Cn: n = 20 → 720 atoms) evolves from the molecular to the bulk material (graphene) behavior using density functional theory. We find that the fullerene’s VDOS smoothly converges to the graphene characteristic line-shape, with the only noticeable discrepancy in the frequency range of the out-of-plane optic (ZO) phonon band. From a comparison of both systems we obtain as main results that: (1) The pentagonal faces in the fulle...
Two new types of molecular/electronic fullerene nanostructures are considered: 1) highly stable hydr...
Size and chemical functionalization dependant optical band gaps in graphene family nanomaterials wer...
We use first-principles density-functional theory to determine the adiabatic frequency shift of the ...
The study of nanostructures’ vibrational properties is at the core of nanoscience research. They are...
We investigated graphene structures grafted with fullerenes. The size of the graphene sheets ranges ...
© the Owner Societies 2015. Vibrational frequencies for carbon clusters, fullerenes and nanotubes ev...
Vibrational dephasing of the lowest energy electronic excitations in the perfect (16,16) graphene na...
The properties of the (n,n) icosahedral family of carbon fullerenes up to n = 10 (6000 atoms) have b...
First-principles pseudopotential-based density functional theory calculations of atomic and electron...
Carbon compounds, as for instance fullerenes and nanotubes, are nowadays among the main actors i...
The interaction of graphene with substrates can alter its electronic and vibrational properties and ...
"Elastic, electronic and vibrational properties of seven models of nanoporous carbon are reported. ...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, 20...
The fullerene era was started in 1985 with the discovery of the stable C60 cluster and its interpret...
Vibrational properties of graphene nanoribbons are examined with density functional based tight-bind...
Two new types of molecular/electronic fullerene nanostructures are considered: 1) highly stable hydr...
Size and chemical functionalization dependant optical band gaps in graphene family nanomaterials wer...
We use first-principles density-functional theory to determine the adiabatic frequency shift of the ...
The study of nanostructures’ vibrational properties is at the core of nanoscience research. They are...
We investigated graphene structures grafted with fullerenes. The size of the graphene sheets ranges ...
© the Owner Societies 2015. Vibrational frequencies for carbon clusters, fullerenes and nanotubes ev...
Vibrational dephasing of the lowest energy electronic excitations in the perfect (16,16) graphene na...
The properties of the (n,n) icosahedral family of carbon fullerenes up to n = 10 (6000 atoms) have b...
First-principles pseudopotential-based density functional theory calculations of atomic and electron...
Carbon compounds, as for instance fullerenes and nanotubes, are nowadays among the main actors i...
The interaction of graphene with substrates can alter its electronic and vibrational properties and ...
"Elastic, electronic and vibrational properties of seven models of nanoporous carbon are reported. ...
Thesis (S.M.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, 20...
The fullerene era was started in 1985 with the discovery of the stable C60 cluster and its interpret...
Vibrational properties of graphene nanoribbons are examined with density functional based tight-bind...
Two new types of molecular/electronic fullerene nanostructures are considered: 1) highly stable hydr...
Size and chemical functionalization dependant optical band gaps in graphene family nanomaterials wer...
We use first-principles density-functional theory to determine the adiabatic frequency shift of the ...