An empirical force field for carbon based upon the Murrell-Mottram potential is developed for the calculation of the vibrational frequencies of carbon nanomaterials. The potential is reparameterised using data from density functional theory calculations through a Monte-Carlo hessian-matching approach, and when used in conjunction with the empirical bond polarisability model provides an accurate description of the non-resonant Raman spectroscopy of carbon nanotubes and graphene. With the availability of analytical first and second derivatives, the computational cost of evaluating harmonic vibrational frequencies is a fraction of the cost of corresponding quantum chemical calculations, and makes the accurate atomistic vibrational analysis of ...
Raman spectroscopy is a common method of studying carbon-based materials such as multi-walled carbon...
This paper reports a vibrational spectroscopic study on a zigzag singlewalled carbon nanotube (SWCNT...
A vibrational analysis of three types of carbonnanotube based nanomechanical resonator is presented....
An empirical force field for carbon based upon the Murrell-Mottram potential is developed for the ca...
An empirical force-field based on the Murrell-Mottram potential is devel- oped to model the vibratio...
Multi-layered carbon nanomaterials can have an important role in modern nanotechnology. Raman spectr...
© the Owner Societies 2015. Vibrational frequencies for carbon clusters, fullerenes and nanotubes ev...
The aim of the present paper is to identify the main Raman vibrational features of carbon nano...
In the present work, We use a force constant model to study the vibrationnel modes of boron do...
Author Institution: Department of Chemistry, faculty of Art and Sciences, Ondokuz Mayis; University,...
Utilizing density functional theory (DFT) the Vienna Ab initio Simulation Package (VASP) was used to...
For the past three decades, newly discovered carbon nanostructures such as fullerenes, graphene and ...
We propose a model for calculating the phonon frequencies of any (n,m) nanotube by considering expli...
The purpose of this thesis is to present a study of vibrational properties of plane carbon systems a...
We present a theoretical study of the vibrational spectrum, in the G band region, of laterally hydro...
Raman spectroscopy is a common method of studying carbon-based materials such as multi-walled carbon...
This paper reports a vibrational spectroscopic study on a zigzag singlewalled carbon nanotube (SWCNT...
A vibrational analysis of three types of carbonnanotube based nanomechanical resonator is presented....
An empirical force field for carbon based upon the Murrell-Mottram potential is developed for the ca...
An empirical force-field based on the Murrell-Mottram potential is devel- oped to model the vibratio...
Multi-layered carbon nanomaterials can have an important role in modern nanotechnology. Raman spectr...
© the Owner Societies 2015. Vibrational frequencies for carbon clusters, fullerenes and nanotubes ev...
The aim of the present paper is to identify the main Raman vibrational features of carbon nano...
In the present work, We use a force constant model to study the vibrationnel modes of boron do...
Author Institution: Department of Chemistry, faculty of Art and Sciences, Ondokuz Mayis; University,...
Utilizing density functional theory (DFT) the Vienna Ab initio Simulation Package (VASP) was used to...
For the past three decades, newly discovered carbon nanostructures such as fullerenes, graphene and ...
We propose a model for calculating the phonon frequencies of any (n,m) nanotube by considering expli...
The purpose of this thesis is to present a study of vibrational properties of plane carbon systems a...
We present a theoretical study of the vibrational spectrum, in the G band region, of laterally hydro...
Raman spectroscopy is a common method of studying carbon-based materials such as multi-walled carbon...
This paper reports a vibrational spectroscopic study on a zigzag singlewalled carbon nanotube (SWCNT...
A vibrational analysis of three types of carbonnanotube based nanomechanical resonator is presented....