The vibrational analysis of sp2-bonded carbon clusters with different nearest-neighbour interatomic distances, (2 in C60, 8 in C70), performed in the framework of the bond-charge model, leads to the determination of an exponential form for the short-range interatomic potential which is inclusive of charge transfer effects. The potential, besides leading to excellent agreement with the existing spectroscopic data and ab initio Car-Parrinello calculations, ensures a good transferability of the model to other clusters and possibly an empirical basis for molecular dynamics simulations
A local-density-functional cluster method is used to calculate the structure and vibrational modes o...
The concept of linking fullerenes to a number of interesting electro- or photoactive species and the...
A local-density-functional cluster method is used to calculate the structure and vibrational modes o...
The bond-charge model, originally devised to calculate the phonon spectrum of bulk semiconductors an...
From simple topological considerations, a new method for calculating the coefficients of the Girifal...
We present a calculation of the vibrational spectrum of the C60 cluster by means of an adiabatic bon...
In both molecular and periodic solid-state systems there is a need for the accurate determination of...
This Letter considers a molecular mechanics approach for the vibration spectra analysis of fullerene...
We calculate the infrared (IR) absorption spectra using DFT B3LYP(6–311G) for a range of small close...
We present the results of an atomic-scale simulation of the confinement of small carbon clusters ins...
Using the surface continuum approximation of carbon atoms and the interatomic Buckingham potential, ...
© the Owner Societies 2015. Vibrational frequencies for carbon clusters, fullerenes and nanotubes ev...
Vibronic spectra of C60, C60Cl30 and two N-methylfulleropyrrolidines are studied with the use of TD-...
6 págs.; 2 tabs.; 1 apéndiceThe electron-phonon and Coulomb interactions in C60 and larger fullerene...
To calculate the proton affinity of fullerene (C60), density functional theory was used to determine...
A local-density-functional cluster method is used to calculate the structure and vibrational modes o...
The concept of linking fullerenes to a number of interesting electro- or photoactive species and the...
A local-density-functional cluster method is used to calculate the structure and vibrational modes o...
The bond-charge model, originally devised to calculate the phonon spectrum of bulk semiconductors an...
From simple topological considerations, a new method for calculating the coefficients of the Girifal...
We present a calculation of the vibrational spectrum of the C60 cluster by means of an adiabatic bon...
In both molecular and periodic solid-state systems there is a need for the accurate determination of...
This Letter considers a molecular mechanics approach for the vibration spectra analysis of fullerene...
We calculate the infrared (IR) absorption spectra using DFT B3LYP(6–311G) for a range of small close...
We present the results of an atomic-scale simulation of the confinement of small carbon clusters ins...
Using the surface continuum approximation of carbon atoms and the interatomic Buckingham potential, ...
© the Owner Societies 2015. Vibrational frequencies for carbon clusters, fullerenes and nanotubes ev...
Vibronic spectra of C60, C60Cl30 and two N-methylfulleropyrrolidines are studied with the use of TD-...
6 págs.; 2 tabs.; 1 apéndiceThe electron-phonon and Coulomb interactions in C60 and larger fullerene...
To calculate the proton affinity of fullerene (C60), density functional theory was used to determine...
A local-density-functional cluster method is used to calculate the structure and vibrational modes o...
The concept of linking fullerenes to a number of interesting electro- or photoactive species and the...
A local-density-functional cluster method is used to calculate the structure and vibrational modes o...