We use classical molecular dynamics simulations to study the collapse of single (SWNT) and double-walled (DWNT) carbon nanotube bundles under hydrostatic pressure. The collapse pressure (pc) varies as 1/R3, where R is the SWNT radius or the DWNT effective radius. The bundles show ~30% hysteresis and the hexagonally close packed lattice is completely restored on decompression. The pc of DWNT is found to be close to the sum of its values for the inner and the outer tubes considered separately as SWNT, demonstrating that the inner tube supports the outer tube and that the effective bending stiffness of DWNT, DDWNT~2DSWNT. We use an elastica formulation to derive the scaling and the collapse behavior of DWNT and multiwalled carbon nanotubes
Various mechanical properties of single-walled carbon nanotubes (SWCNT) and double-walled carbon nan...
The present thesis constitutes a set of experimental studies on the effect of high pressures on sing...
Carbon nanotubes tend to collapse when their diameters exceed a certain threshold, or when a suffici...
We use classical molecular dynamics simulations to study the collapse of single (SWNT) and double-wa...
We have used Raman spectroscopy to study the behavior of double-walled carbon nanotubes (DWNT) under...
We used simulations with a classical force field to study the transformation under hydrostatic press...
We study the pressure induced collapse of single-, double- and triple-wall carbon nanotubes. Theoret...
Abstract. We investigate the structural and mechanical properties of single-walled carbon nanotubes ...
We studied the structure of single-walled carbon nanotubes under hydrostatic pressure by first-princ...
We report here an in situ X-ray diffraction investigation of the structural changes in carbon single...
In this paper we have developed a theory of energetics for isolated single-wall carbon nanotubes SW...
Journal ArticleWe demonstrate a hydrostatic pressure-induced hard-to-soft transition of an isolated ...
Molecular dynamics simulations are performed on multiwalled carbon nanotubes (MWCNTs) under axial co...
We report high pressure Raman studies on single wall carbon nanotube bundles under hydrostatic condi...
High pressure Raman experiments were performed on a bundled double-wall carbon nanotubes (DWNTs) u...
Various mechanical properties of single-walled carbon nanotubes (SWCNT) and double-walled carbon nan...
The present thesis constitutes a set of experimental studies on the effect of high pressures on sing...
Carbon nanotubes tend to collapse when their diameters exceed a certain threshold, or when a suffici...
We use classical molecular dynamics simulations to study the collapse of single (SWNT) and double-wa...
We have used Raman spectroscopy to study the behavior of double-walled carbon nanotubes (DWNT) under...
We used simulations with a classical force field to study the transformation under hydrostatic press...
We study the pressure induced collapse of single-, double- and triple-wall carbon nanotubes. Theoret...
Abstract. We investigate the structural and mechanical properties of single-walled carbon nanotubes ...
We studied the structure of single-walled carbon nanotubes under hydrostatic pressure by first-princ...
We report here an in situ X-ray diffraction investigation of the structural changes in carbon single...
In this paper we have developed a theory of energetics for isolated single-wall carbon nanotubes SW...
Journal ArticleWe demonstrate a hydrostatic pressure-induced hard-to-soft transition of an isolated ...
Molecular dynamics simulations are performed on multiwalled carbon nanotubes (MWCNTs) under axial co...
We report high pressure Raman studies on single wall carbon nanotube bundles under hydrostatic condi...
High pressure Raman experiments were performed on a bundled double-wall carbon nanotubes (DWNTs) u...
Various mechanical properties of single-walled carbon nanotubes (SWCNT) and double-walled carbon nan...
The present thesis constitutes a set of experimental studies on the effect of high pressures on sing...
Carbon nanotubes tend to collapse when their diameters exceed a certain threshold, or when a suffici...