Single-walled carbon nanotubes (SWCNTs) dispersed in aqueous medium have many potential applications in chemistry, biology, and medicine. Reversible aggregation of SWCNTs dispersed in water has been frequently reported, but the mechanisms behind are not well understood. Here we show that SWCNTs dispersed into aqueous medium assisted by various charged molecules can be reversibly aggregated by a variety of electrolytes with two distinct mechanisms. Direct binding of counterions to SWCNTs leads to aggregation when the surface charge is neutralized from 74 to 86%. This aggregation is driven by electrostatic instead of van der Waals interactions, thus showing similarity to that of DNA condensation induced by multivalent cations. Sequestration o...
Nanosilicas can disperse single-wall carbon nanotube (SWCNT) in aqueous solution efficiently; SWCNTs...
It is necessary to form a stable dispersion of nanotubes in order to properly integrate them into po...
The main hurdle preventing the widespread use of single-walled carbon nanotubes remains the lack of ...
ABSTRACT: Single-walled carbon nanotubes (SWCNTs) dispersed in aqueous medium have many potential ap...
Single-walled carbon nanotubes (SWCNTs) dispersed in aqueous media have many potential applications ...
Single-wall carbon nanotubes pack into crystalline ropes that aggregate into tangled networks due to...
Little is known about how low levels of surfactants can affect the colloidal stability of single-wal...
Because of outstanding electrical conductivity, ther-mal conductivity, and mechanical strength, sing...
We present a new, efficient approach to achieve superior dispersibility of single-walled carbon nano...
The main hurdle preventing the widespread useof single-walled carbon nanotubes remains the lack ofme...
The assembly of sodium polystyrene sulfonate (Na+-PSS) at the surface of single-walled carbon nanotu...
The assembly of sodium polystyrene sulfonate (Na+-PSS) at the surface of single-walled carbon nanotu...
The assembly of sodium polystyrene sulfonate (Na+-PSS) at the surface of single-walled carbon nanotu...
The assembly of sodium polystyrene sulfonate (Na+-PSS) at the surface of single-walled carbon nanotu...
Aggregation kinetics of chiral-specific semiconducting single-walled carbon nanotubes (SWNTs) was sy...
Nanosilicas can disperse single-wall carbon nanotube (SWCNT) in aqueous solution efficiently; SWCNTs...
It is necessary to form a stable dispersion of nanotubes in order to properly integrate them into po...
The main hurdle preventing the widespread use of single-walled carbon nanotubes remains the lack of ...
ABSTRACT: Single-walled carbon nanotubes (SWCNTs) dispersed in aqueous medium have many potential ap...
Single-walled carbon nanotubes (SWCNTs) dispersed in aqueous media have many potential applications ...
Single-wall carbon nanotubes pack into crystalline ropes that aggregate into tangled networks due to...
Little is known about how low levels of surfactants can affect the colloidal stability of single-wal...
Because of outstanding electrical conductivity, ther-mal conductivity, and mechanical strength, sing...
We present a new, efficient approach to achieve superior dispersibility of single-walled carbon nano...
The main hurdle preventing the widespread useof single-walled carbon nanotubes remains the lack ofme...
The assembly of sodium polystyrene sulfonate (Na+-PSS) at the surface of single-walled carbon nanotu...
The assembly of sodium polystyrene sulfonate (Na+-PSS) at the surface of single-walled carbon nanotu...
The assembly of sodium polystyrene sulfonate (Na+-PSS) at the surface of single-walled carbon nanotu...
The assembly of sodium polystyrene sulfonate (Na+-PSS) at the surface of single-walled carbon nanotu...
Aggregation kinetics of chiral-specific semiconducting single-walled carbon nanotubes (SWNTs) was sy...
Nanosilicas can disperse single-wall carbon nanotube (SWCNT) in aqueous solution efficiently; SWCNTs...
It is necessary to form a stable dispersion of nanotubes in order to properly integrate them into po...
The main hurdle preventing the widespread use of single-walled carbon nanotubes remains the lack of ...