Current carbon nanotube (CNT) synthesis methods include the production of ordered, free-standing vertically aligned arrays, the properties of which are partially governed by interactions between adjacent tubes. Using material parameters determined by atomistic methods, here we represent individual CNTs by a simple single degree of freedom ‘lollipop’ model to investigate the formation, mechanics, and self-organization of CNT bundles driven by weak van der Waals interactions. The computationally efficient simple single degree of freedom model enables us to study arrays consisting of hundreds of thousands of nanotubes. The effects of nanotube parameters such as aspect ratio, bending stiffness, and surface energy, on formation and bundle size, ...
AbstractCarbon nanotube macro-films are two-dimensional films with micrometer thickness and centimet...
Based on a self-similar array model, we systematically investigated the axial Young's modulus (Y-axi...
The mechanical and electrical properties of a direct-spun carbon nanotube mat are measured. The mat ...
To describe single-walled carbon nanotube (SWNT) arrays, we propose a self-similar array model. For ...
Since their discoveries, carbon nanotubes have been widely studied, but mostly in the forms of 1D in...
In this paper, we present extensive molecular mechanics and molecular dynamics studies on the energy...
We present an adaptive mesoscale model for carbon nanotube (CNT) systems. In our model, CNTs are rep...
Mesoscopic tubular potential is developed for the description of the van der Waals interaction betwe...
Carbon nanotubes (CNTs) have record high tensile strength and Young’s modulus, which makes them idea...
A computational approach for generation of network structures of interconnected carbon nanotube (CNT...
In elasto-capillary driven self-assembly of arrays of carbon nanotubes (CNTs) different factors play...
A computational approach for creating realistically structured carbon nanotubes is presented to enab...
Atomic force microscopy (AFM), high resolution transmission electron microscopy, and Raman spectrosc...
Large-diameter carbon nanotubes (CNTs) synthesized by floating-catalyst chemical vapor deposition (F...
Close packed carbon nanotube bundles are materials with highly deformable elements, for which unusua...
AbstractCarbon nanotube macro-films are two-dimensional films with micrometer thickness and centimet...
Based on a self-similar array model, we systematically investigated the axial Young's modulus (Y-axi...
The mechanical and electrical properties of a direct-spun carbon nanotube mat are measured. The mat ...
To describe single-walled carbon nanotube (SWNT) arrays, we propose a self-similar array model. For ...
Since their discoveries, carbon nanotubes have been widely studied, but mostly in the forms of 1D in...
In this paper, we present extensive molecular mechanics and molecular dynamics studies on the energy...
We present an adaptive mesoscale model for carbon nanotube (CNT) systems. In our model, CNTs are rep...
Mesoscopic tubular potential is developed for the description of the van der Waals interaction betwe...
Carbon nanotubes (CNTs) have record high tensile strength and Young’s modulus, which makes them idea...
A computational approach for generation of network structures of interconnected carbon nanotube (CNT...
In elasto-capillary driven self-assembly of arrays of carbon nanotubes (CNTs) different factors play...
A computational approach for creating realistically structured carbon nanotubes is presented to enab...
Atomic force microscopy (AFM), high resolution transmission electron microscopy, and Raman spectrosc...
Large-diameter carbon nanotubes (CNTs) synthesized by floating-catalyst chemical vapor deposition (F...
Close packed carbon nanotube bundles are materials with highly deformable elements, for which unusua...
AbstractCarbon nanotube macro-films are two-dimensional films with micrometer thickness and centimet...
Based on a self-similar array model, we systematically investigated the axial Young's modulus (Y-axi...
The mechanical and electrical properties of a direct-spun carbon nanotube mat are measured. The mat ...