Abstract. Elastic, electronic and vibrational properties of seven models of nanoporous carbon are reported. The studied structures are periodic graphitic arrangements with heptagonal and octagonal rings of carbon, known as Schwarzites. The calculations were performed within a non-orthogonal tight binding framework which has been shown to be reliable for diamond, graphene layers, fullerenes and carbon nanotubes. In contrast with previous studies, each structure was properly relaxed, so that differences between each model must be assigned to intrinsic properties rather than to differences in their construction
The nature of diamond-graphite hybrids has been studied by molecular mechanics, by examining the str...
These nanoporous (NP) carbon atomic structures, in extendend XYZ format, have been generated using a...
We have reported, from ab initio calculations, on the changes in the electronic and structural prope...
"Elastic, electronic and vibrational properties of seven models of nanoporous carbon are reported. ...
In this paper, we present computational results for C20 based solids. We propose structures that are...
Nanoporous carbon (NPC) exhibits unexplained chemical properties, making it distinct from other grap...
Carbon has shown itself to be the most flexible of atoms, crystallizing in divergent phases such as ...
Nowadays sp carbon chains terminated by graphene or graphitic-like carbon are synthesized routinely ...
Disordered carbons comprise graphene fragments assembled into three-dimensional networks. It has lon...
Tesis (Doctorado en Nanociencias y Nanotecnología)"In this thesis we review and discuss, from a theo...
We study the structural and mechanical properties of nanoporous (NP) carbon materials by extensive a...
Carbon materials are distinguished by their unusual variety of structures. They allow the realizatio...
We present a tight-binding molecular-dynamics investigation on the structural, elastic and electron...
We use ab initio density functional calculations to study the stability, elastic properties and elec...
We present a methodology for modeling atomically layered narroporous carbonaceous solids. Our method...
The nature of diamond-graphite hybrids has been studied by molecular mechanics, by examining the str...
These nanoporous (NP) carbon atomic structures, in extendend XYZ format, have been generated using a...
We have reported, from ab initio calculations, on the changes in the electronic and structural prope...
"Elastic, electronic and vibrational properties of seven models of nanoporous carbon are reported. ...
In this paper, we present computational results for C20 based solids. We propose structures that are...
Nanoporous carbon (NPC) exhibits unexplained chemical properties, making it distinct from other grap...
Carbon has shown itself to be the most flexible of atoms, crystallizing in divergent phases such as ...
Nowadays sp carbon chains terminated by graphene or graphitic-like carbon are synthesized routinely ...
Disordered carbons comprise graphene fragments assembled into three-dimensional networks. It has lon...
Tesis (Doctorado en Nanociencias y Nanotecnología)"In this thesis we review and discuss, from a theo...
We study the structural and mechanical properties of nanoporous (NP) carbon materials by extensive a...
Carbon materials are distinguished by their unusual variety of structures. They allow the realizatio...
We present a tight-binding molecular-dynamics investigation on the structural, elastic and electron...
We use ab initio density functional calculations to study the stability, elastic properties and elec...
We present a methodology for modeling atomically layered narroporous carbonaceous solids. Our method...
The nature of diamond-graphite hybrids has been studied by molecular mechanics, by examining the str...
These nanoporous (NP) carbon atomic structures, in extendend XYZ format, have been generated using a...
We have reported, from ab initio calculations, on the changes in the electronic and structural prope...