Molecular dynamics computer simulations of the filling of carbon nanotubes (CNTs) by a generic molten salt to form hexagonal-net-based inorganic nanotubes (INTs) are described. A model is introduced to incorporate CNT metallicity which imposes variable Gaussian charges on each atomic site in order to retain an equipotential. The inclusion of CNT metallicity is observed to have no significant effect on the distribution of the INT morphologies formed as compared with the filling of non-metallic CNTs. The application of a voltage bias to the CNT forms a new class of INTs which can be considered as constructed from concentric layers of pseudo-close-packed anions and cations. Removal of the voltage bias leads to the formation of hexagonal-net-ba...
The mechanics and chemistry of carbon nanotubes have relevance for their numerous electronic applica...
Carbon nanotubes (CNTs) are promising building blocks for nanodevices owing to their superior electr...
A computational approach for creating realistically structured carbon nanotubes is presented to enab...
Molecular dynamics computer simulations of the filling of carbon nanotubes (CNTs) by a generic molte...
The filling of carbon nanotubes, which vary in diameter and morphology, is directly observed by mole...
Inorganic nanotube structures (INTs) can be synthesised through the direct filling of carbon nanotub...
Two classes of ionic inorganic nanotube (IINT) are predicted to form within carbon nanotubes via the...
Inorganic nanotube structures (INTs) can be synthesised through the direct �filling of carbon nanotu...
The direct filling of flexible single-walled carbon nanotubes by model molten salts are described. T...
Computer simulation models were constructed and applied to understand the low-dimensional crystallit...
A full understanding of the mechanisms that lead to the dispersion of carbon nanotubes (CNTs) is sti...
The formation of low-dimensional crystal structures, obtained by filling carbon nanotubes from the m...
Various inorganic salts can be encapsulated inside the comparatively narrow (0.8-2 nm) hollow core o...
Various inorganic salts can be encapsulated inside the comparatively narrow (0.8-2 nm) hollow core o...
The transformation of amorphous carbon nanorods into multi-wall nanotubes is studied using molecular...
The mechanics and chemistry of carbon nanotubes have relevance for their numerous electronic applica...
Carbon nanotubes (CNTs) are promising building blocks for nanodevices owing to their superior electr...
A computational approach for creating realistically structured carbon nanotubes is presented to enab...
Molecular dynamics computer simulations of the filling of carbon nanotubes (CNTs) by a generic molte...
The filling of carbon nanotubes, which vary in diameter and morphology, is directly observed by mole...
Inorganic nanotube structures (INTs) can be synthesised through the direct filling of carbon nanotub...
Two classes of ionic inorganic nanotube (IINT) are predicted to form within carbon nanotubes via the...
Inorganic nanotube structures (INTs) can be synthesised through the direct �filling of carbon nanotu...
The direct filling of flexible single-walled carbon nanotubes by model molten salts are described. T...
Computer simulation models were constructed and applied to understand the low-dimensional crystallit...
A full understanding of the mechanisms that lead to the dispersion of carbon nanotubes (CNTs) is sti...
The formation of low-dimensional crystal structures, obtained by filling carbon nanotubes from the m...
Various inorganic salts can be encapsulated inside the comparatively narrow (0.8-2 nm) hollow core o...
Various inorganic salts can be encapsulated inside the comparatively narrow (0.8-2 nm) hollow core o...
The transformation of amorphous carbon nanorods into multi-wall nanotubes is studied using molecular...
The mechanics and chemistry of carbon nanotubes have relevance for their numerous electronic applica...
Carbon nanotubes (CNTs) are promising building blocks for nanodevices owing to their superior electr...
A computational approach for creating realistically structured carbon nanotubes is presented to enab...