Using a new thermal process and an ab initio molecular dynamics method based on the Harris functional on original crystalline, periodically continued 64-atom diamond-like cells, we generated amorphous carbon for two different densities: 1.8 and 2.6 g/cm(3), with a 4.0-fs time step. The radial distribution functions (RDF) show the four characteristic experimental peaks. Bond angle distributions are also obtained, as well as the number of n-atom rings. The low-density sample has a larger quantity of sp(2) bonds but the high-density sample agrees better with experiment. (C) 2002 Elsevier Science B.V. All rights reserved
We use liner-scaling tight-binding molecular dynamics to generate three structural models of bulk am...
We have generated a new model for the structure of tetrahedral amorphous carbon using a modified rev...
The nature of amorphous carbon has been explored by molecular mechanics by examining the structures ...
Description This dataset was used in our manuscript titled “Persistent homology-based descriptor fo...
We generate representative structural models of amorphous carbon (a-C) from constant-volume quenchin...
We generate representative structural models of amorphous carbon (a-C) from constant-volume quenchin...
A thermal procedure and an ab initio molecular-dynamics method based on the Harris functional, appli...
A parametric study of ReaxFF for molecular dynamics simulation of graphitization of amorphous carbon...
A parametric study of ReaxFF for molecular dynamics simulation of graphitization of amorphous carbon...
We have developed the reverse Monte Carlo (RMC) modeling method to generate two physically acceptabl...
A detailed atomistic model of amorphous diamond-like carbon was developed combining experimental neu...
Amorphous carbon films approximately 20 nm thick are used throughout the computer industry as protec...
Amorphous carbon films can be prepared with a range of sp(3) fractions, ranging from pure sp(2) to a...
The growth of amorphous carbon (a-C) thin film on a [1 1 1] diamond surface has been studied by a ti...
Tight-binding molecular dynamics simulations reveal interesting physical trends in amorphous carbon ...
We use liner-scaling tight-binding molecular dynamics to generate three structural models of bulk am...
We have generated a new model for the structure of tetrahedral amorphous carbon using a modified rev...
The nature of amorphous carbon has been explored by molecular mechanics by examining the structures ...
Description This dataset was used in our manuscript titled “Persistent homology-based descriptor fo...
We generate representative structural models of amorphous carbon (a-C) from constant-volume quenchin...
We generate representative structural models of amorphous carbon (a-C) from constant-volume quenchin...
A thermal procedure and an ab initio molecular-dynamics method based on the Harris functional, appli...
A parametric study of ReaxFF for molecular dynamics simulation of graphitization of amorphous carbon...
A parametric study of ReaxFF for molecular dynamics simulation of graphitization of amorphous carbon...
We have developed the reverse Monte Carlo (RMC) modeling method to generate two physically acceptabl...
A detailed atomistic model of amorphous diamond-like carbon was developed combining experimental neu...
Amorphous carbon films approximately 20 nm thick are used throughout the computer industry as protec...
Amorphous carbon films can be prepared with a range of sp(3) fractions, ranging from pure sp(2) to a...
The growth of amorphous carbon (a-C) thin film on a [1 1 1] diamond surface has been studied by a ti...
Tight-binding molecular dynamics simulations reveal interesting physical trends in amorphous carbon ...
We use liner-scaling tight-binding molecular dynamics to generate three structural models of bulk am...
We have generated a new model for the structure of tetrahedral amorphous carbon using a modified rev...
The nature of amorphous carbon has been explored by molecular mechanics by examining the structures ...