We present a theoretical study of the vibrational spectrum, in the G band region, of laterally hydrogenated single wall carbon nanotubes through molecular dynamics simulations. We find that bilateral hydrogenation e which can be induced by hydrogenation under lateral strain e causes permanent oval deformations on the nanotubes and induces the splitting of vibrational states in the G-band region. We propose that such splitting can be used as a Raman fingerprint for detecting nanotubes that have been permanently modified due to bilateral hydrogenation. In particular, our results may help to clarify the recent findings of Araujo and collaborators [Nano Lett. 12, 4110 (2012)] which have found permanent modifications in the Raman G peaks of loca...
We use sulfuric acid as pressure medium to extrapolate the G-band position of the inner and outer tu...
We compare the G and G2D bands of single-, double- and triple-wall carbon nanotubes (CNTs). We obser...
The aim of the present paper is to identify the main Raman vibrational features of carbon nano...
Submitted by Ana Caroline Calderaro (karolcalderaro@hotmail.com) on 2016-09-15T15:36:58Z No. of bit...
UnrestrictedIn this thesis, I present resonant Raman spectroscopy of individual carbon nanotube bund...
Surface-enhanced Raman scattering spectra of an individual multiwalled carbon nanotube (MWNT) with t...
Raman spectra of individual double wall carbon nanotubes(DWs) on silica show a splitting of the G ba...
We observe clear differences in the spectral shift of the Raman D and G bands when heating double wa...
We use near-field Raman imaging and spectroscopy to study localized vibrational modes along individu...
We report on the direct visualization of chirality changes in carbon nanotubes by mapping local chan...
Abstract. We present a new interpretation of the origin of the first-order Raman modes in single-wal...
Due to remarkable rolling structure and distinct rolling direction, the chirality-dependent Raman sp...
Raman spectra of single-wall carbon nanotubes (SWNTs) exhibit a unique radial breathing mode (RBM) b...
We have examined several sets of heterogeneous double wall carbon nanotubes and analysed the frequen...
An empirical force-field based on the Murrell-Mottram potential is devel- oped to model the vibratio...
We use sulfuric acid as pressure medium to extrapolate the G-band position of the inner and outer tu...
We compare the G and G2D bands of single-, double- and triple-wall carbon nanotubes (CNTs). We obser...
The aim of the present paper is to identify the main Raman vibrational features of carbon nano...
Submitted by Ana Caroline Calderaro (karolcalderaro@hotmail.com) on 2016-09-15T15:36:58Z No. of bit...
UnrestrictedIn this thesis, I present resonant Raman spectroscopy of individual carbon nanotube bund...
Surface-enhanced Raman scattering spectra of an individual multiwalled carbon nanotube (MWNT) with t...
Raman spectra of individual double wall carbon nanotubes(DWs) on silica show a splitting of the G ba...
We observe clear differences in the spectral shift of the Raman D and G bands when heating double wa...
We use near-field Raman imaging and spectroscopy to study localized vibrational modes along individu...
We report on the direct visualization of chirality changes in carbon nanotubes by mapping local chan...
Abstract. We present a new interpretation of the origin of the first-order Raman modes in single-wal...
Due to remarkable rolling structure and distinct rolling direction, the chirality-dependent Raman sp...
Raman spectra of single-wall carbon nanotubes (SWNTs) exhibit a unique radial breathing mode (RBM) b...
We have examined several sets of heterogeneous double wall carbon nanotubes and analysed the frequen...
An empirical force-field based on the Murrell-Mottram potential is devel- oped to model the vibratio...
We use sulfuric acid as pressure medium to extrapolate the G-band position of the inner and outer tu...
We compare the G and G2D bands of single-, double- and triple-wall carbon nanotubes (CNTs). We obser...
The aim of the present paper is to identify the main Raman vibrational features of carbon nano...