We highlight the significance of capillary pressure in the directed assembly of nanorods in ordered arrays of colloidal particles. Specifically, we discuss mechanisms for the assembly of carbon nanotubes at the interstitial sites between latex polymer particles during composite film formation. Our study points to general design rules to be considered to optimize the ordering of nanostructures within such polymer matrices. In particular, gaining an understanding of the role of capillary forces is critical. Using a combination of electron microscopy and atomic force microscopy, we show that the capillary forces acting on the latex particles during the drying process are sufficient to bend carbon nanotubes. The extent of bending depends on the...
Pattern formation by capillary forces in a nanoscale system was studied experimentally. Densely pack...
A new technology called capillary forming enables transformation of vertically aligned nanoscale fil...
A significant reduction in the electrical percolation threshold is achieved by locking carbon nanotu...
We highlight the significance of capillary pressure in the directed assembly of nanorods in ordered ...
Elastocapillary self-assembly is emerging as a versatile technique to manufacture three-dimensional ...
ABSTRACT: Elastocapillary self-assembly is emerging as a versatile technique to manufacture three-di...
Elastocapillary self-assembly is emerging as a versatile technique to manufacture three-dimensional ...
It is necessary to form a stable dispersion of nanotubes in order to properly integrate them into po...
The reinforcing and conductive performance of carbon nanotube polymer-based nanocomposites depends o...
We analyze the polymer filling mechanism in composites containing highly ordered and vertically alig...
International audienceAnisotropic nature (rod-like geometry) allows carbon nanotubes (CNTs) to estab...
Single-wall carbon nanotubes pack into crystalline ropes that aggregate into tangled networks due to...
It is necessary to form a stable dispersion of nanotubes in order to properly integrate them into po...
Driven by capillary force, wet carbon nanotube (CNT) arrays have been found to reorganize into cellu...
In the present experimental study we investigate polymer behavior in aligned carbon nanotube (CNT) a...
Pattern formation by capillary forces in a nanoscale system was studied experimentally. Densely pack...
A new technology called capillary forming enables transformation of vertically aligned nanoscale fil...
A significant reduction in the electrical percolation threshold is achieved by locking carbon nanotu...
We highlight the significance of capillary pressure in the directed assembly of nanorods in ordered ...
Elastocapillary self-assembly is emerging as a versatile technique to manufacture three-dimensional ...
ABSTRACT: Elastocapillary self-assembly is emerging as a versatile technique to manufacture three-di...
Elastocapillary self-assembly is emerging as a versatile technique to manufacture three-dimensional ...
It is necessary to form a stable dispersion of nanotubes in order to properly integrate them into po...
The reinforcing and conductive performance of carbon nanotube polymer-based nanocomposites depends o...
We analyze the polymer filling mechanism in composites containing highly ordered and vertically alig...
International audienceAnisotropic nature (rod-like geometry) allows carbon nanotubes (CNTs) to estab...
Single-wall carbon nanotubes pack into crystalline ropes that aggregate into tangled networks due to...
It is necessary to form a stable dispersion of nanotubes in order to properly integrate them into po...
Driven by capillary force, wet carbon nanotube (CNT) arrays have been found to reorganize into cellu...
In the present experimental study we investigate polymer behavior in aligned carbon nanotube (CNT) a...
Pattern formation by capillary forces in a nanoscale system was studied experimentally. Densely pack...
A new technology called capillary forming enables transformation of vertically aligned nanoscale fil...
A significant reduction in the electrical percolation threshold is achieved by locking carbon nanotu...