International audienceWe report the structures and the nonresonant Raman spectra of hybrid systems composed of carbon fullerenes (C60 and C70) encased within single walled boron nitride nanotube. The optimal structure of these systems are derived from total energy minimization using a convenient Lennard-Jones expression of the van derWaals intermolecular potential. The Raman spectra have been calculated as a function of nanotube diameter and fullerene concentration using the bond polarizability model combined with the spectral moment method. These results should be useful for the interpretation of the experimental Raman spectra of boron nitride nanotubes encasing C60 and C70 fullerenes
In the present work, We use a force constant model to study the vibrationnel modes of boron do...
Single-walled carbon nanotubes (SWNTs) under a moderate non-hydrostatic pressure, of 0.58 GPa, under...
In this work, the Raman spectra of LCCs encapsulated single-walled carbon nanotubes (SWCNTs) are cal...
We report the structures and the nonresonant Raman spectra of hybrid systems composed of carbon full...
International audienceThis work focuses on the hybrid system between C70 and a carbon nanotube (C70 ...
Abstract. Boron nitride nanotubes (BN-NT) are topological analoges to single wall carbon nanotubes ...
International audienceWe calculated the nonresonant Raman spectra of C60 peapods to determine the co...
International audienceWe use the spectral moments method in the framework of the bond-polarization t...
Two new types of molecular/electronic fullerene nanostructures are considered: 1) highly stable hydr...
We present a force constants model for the vibrational modes in C60 dimer and polymer phase...
Boron nitride nanotubes (BN-NT) are topological analoges to single wall carbon nanotubes (SWCNT). We...
Carbon nanobuds (CNBs) represent an emerging nanostructure, in which fullerene molecules are covalen...
Continuum based models are presented here for certain boron nitride and carbon nanostructures. In pa...
We use the spectral moments method in the framework of the bond-polarization theory to calculate pol...
The use of boron nitride nanotubes as effective nanoscale containers for the confinement and thermal...
In the present work, We use a force constant model to study the vibrationnel modes of boron do...
Single-walled carbon nanotubes (SWNTs) under a moderate non-hydrostatic pressure, of 0.58 GPa, under...
In this work, the Raman spectra of LCCs encapsulated single-walled carbon nanotubes (SWCNTs) are cal...
We report the structures and the nonresonant Raman spectra of hybrid systems composed of carbon full...
International audienceThis work focuses on the hybrid system between C70 and a carbon nanotube (C70 ...
Abstract. Boron nitride nanotubes (BN-NT) are topological analoges to single wall carbon nanotubes ...
International audienceWe calculated the nonresonant Raman spectra of C60 peapods to determine the co...
International audienceWe use the spectral moments method in the framework of the bond-polarization t...
Two new types of molecular/electronic fullerene nanostructures are considered: 1) highly stable hydr...
We present a force constants model for the vibrational modes in C60 dimer and polymer phase...
Boron nitride nanotubes (BN-NT) are topological analoges to single wall carbon nanotubes (SWCNT). We...
Carbon nanobuds (CNBs) represent an emerging nanostructure, in which fullerene molecules are covalen...
Continuum based models are presented here for certain boron nitride and carbon nanostructures. In pa...
We use the spectral moments method in the framework of the bond-polarization theory to calculate pol...
The use of boron nitride nanotubes as effective nanoscale containers for the confinement and thermal...
In the present work, We use a force constant model to study the vibrationnel modes of boron do...
Single-walled carbon nanotubes (SWNTs) under a moderate non-hydrostatic pressure, of 0.58 GPa, under...
In this work, the Raman spectra of LCCs encapsulated single-walled carbon nanotubes (SWCNTs) are cal...