AbstractIn this paper, we survey existing geometric structures which have been proposed by the authors as possible models for nanotubes. Atoms assemble into molecules following the laws of quantum mechanics, and in general computational approaches to predicting the molecular structure can be arduous and involve considerable computing time. Fortunately, nature favours minimum energy structures which tend to be either very symmetric or very unsymmetric, and which therefore can be analyzed from a geometrical perspective. The conventional rolled-up model of nanotubes completely ignores any effects due to curvature and the present authors have proposed a number of exact geometric models. Here we review a number of these recent developments relat...
The fine geometry of carbon nanotubes is investigated from the viewpoint of Molecular Mechanics. Act...
AbstractIn a recent computational study, we found highly structured ground states for coarse-grained...
Multiwalled inorganic nanotubes with circular cross sections must have either an incoherent interfac...
In this paper, we survey existing geometric structures which have been proposed by the authors as po...
AbstractTwo new models for the geometric structure of nanotubes comprising hexagonal lattices are de...
In this paper, we introduce an idealized model of silicon nanotubes comprising an exact polyhedral g...
Two new models for the geometric structure of nanotubes comprising hexagonal lattices are described....
An exact idealized polyhedral model is formulated to describe the geometry of single-walled boron na...
Polyhedral model for boron nitride nanotubes The conventional rolled‐up model for nanotubes does not...
In this Article, we extend both the rolled-up model and the polyhedral geometric model for single-wa...
For carbon nanotubes, there is constructed a geometric model of polyhedral type, which allows the ex...
The conventional rolled-up model of nanotubes does not apply to the very small radii tubes, for whic...
In this paper, we extend both the rolled-up and the polyhedral models for single-walled silicon nano...
In this paper, we extend both the rolled-up and the polyhedral models for single-walled silicon nano...
In many computational studies of carbon nanotubes, the minimum energy configuration frequently settl...
The fine geometry of carbon nanotubes is investigated from the viewpoint of Molecular Mechanics. Act...
AbstractIn a recent computational study, we found highly structured ground states for coarse-grained...
Multiwalled inorganic nanotubes with circular cross sections must have either an incoherent interfac...
In this paper, we survey existing geometric structures which have been proposed by the authors as po...
AbstractTwo new models for the geometric structure of nanotubes comprising hexagonal lattices are de...
In this paper, we introduce an idealized model of silicon nanotubes comprising an exact polyhedral g...
Two new models for the geometric structure of nanotubes comprising hexagonal lattices are described....
An exact idealized polyhedral model is formulated to describe the geometry of single-walled boron na...
Polyhedral model for boron nitride nanotubes The conventional rolled‐up model for nanotubes does not...
In this Article, we extend both the rolled-up model and the polyhedral geometric model for single-wa...
For carbon nanotubes, there is constructed a geometric model of polyhedral type, which allows the ex...
The conventional rolled-up model of nanotubes does not apply to the very small radii tubes, for whic...
In this paper, we extend both the rolled-up and the polyhedral models for single-walled silicon nano...
In this paper, we extend both the rolled-up and the polyhedral models for single-walled silicon nano...
In many computational studies of carbon nanotubes, the minimum energy configuration frequently settl...
The fine geometry of carbon nanotubes is investigated from the viewpoint of Molecular Mechanics. Act...
AbstractIn a recent computational study, we found highly structured ground states for coarse-grained...
Multiwalled inorganic nanotubes with circular cross sections must have either an incoherent interfac...