Debundling and dispersion of carbon nanotubes (CNTs) are very important for preparation of polymer/CNT nanocomposites. In the present study, a self-prepared gemini surfactant, 6,6′-(butane-1,4-diylbis(oxy))bis(3-nonylbenzenesulfonic acid), is employed to achieve homogeneous and stable dispersion of multi-walled carbon nanotubes (MWNTs) in organic solvent and subsequent polystyrene (PS)/MWNT nanocomposite. Sedimentation, optical microscopy and transmission electron microscopy studies demonstrate that the gemini surfactant can greatly improve the dispersion and stabilization of MWNTs in toluene. Scanning electron microscopic images clearly confirm the homogenous dispersion of individual MWNTs in PS. In addition, desired enhanced electrical co...
The stabilizing character of poly(ethylene glycol) linked butylpyrene in multiwall carbon nanotube (...
In this paper, we report a surfactant assisted processable organic dispersions of conducting form of...
In this paper, we report a surfactant assisted processable organic dispersions of conducting form of...
A versatile method for the preparation of dispersed nanotubes using polystyrene-b-polyisoprene diblo...
A versatile method for the preparation of dispersed nanotubes using polystyrene-b-polyisoprene diblo...
A versatile method for the preparation of dispersed nanotubes using polystyrene-b-polyisoprene diblo...
A versatile method for the preparation of dispersed nanotubes using polystyrene-b-polyisoprene diblo...
The dispersion stability of carbon nanotubes in water and organic solvents is a challenging task for...
The dispersion stability of carbon nanotubes in water and organic solvents is a challenging task for...
Dispersions of individual carbon nanotubes (CNTs) are crucial for nanodevices and polymer/CNTs nanoc...
Dispersion of carbon nanotubes (CNTs) is a challenging task for their utilization in nanoscale devic...
In this paper, we report a surfactant assisted processable organic dispersions of conducting form of...
In this paper, we report a surfactant assisted processable organic dispersions of conducting form of...
In this paper, we report a surfactant assisted processable organic dispersions of conducting form of...
The polymer nanocomposite used in this work comprises elastomer poly(dimethylsiloxane) (PDMS) as a p...
The stabilizing character of poly(ethylene glycol) linked butylpyrene in multiwall carbon nanotube (...
In this paper, we report a surfactant assisted processable organic dispersions of conducting form of...
In this paper, we report a surfactant assisted processable organic dispersions of conducting form of...
A versatile method for the preparation of dispersed nanotubes using polystyrene-b-polyisoprene diblo...
A versatile method for the preparation of dispersed nanotubes using polystyrene-b-polyisoprene diblo...
A versatile method for the preparation of dispersed nanotubes using polystyrene-b-polyisoprene diblo...
A versatile method for the preparation of dispersed nanotubes using polystyrene-b-polyisoprene diblo...
The dispersion stability of carbon nanotubes in water and organic solvents is a challenging task for...
The dispersion stability of carbon nanotubes in water and organic solvents is a challenging task for...
Dispersions of individual carbon nanotubes (CNTs) are crucial for nanodevices and polymer/CNTs nanoc...
Dispersion of carbon nanotubes (CNTs) is a challenging task for their utilization in nanoscale devic...
In this paper, we report a surfactant assisted processable organic dispersions of conducting form of...
In this paper, we report a surfactant assisted processable organic dispersions of conducting form of...
In this paper, we report a surfactant assisted processable organic dispersions of conducting form of...
The polymer nanocomposite used in this work comprises elastomer poly(dimethylsiloxane) (PDMS) as a p...
The stabilizing character of poly(ethylene glycol) linked butylpyrene in multiwall carbon nanotube (...
In this paper, we report a surfactant assisted processable organic dispersions of conducting form of...
In this paper, we report a surfactant assisted processable organic dispersions of conducting form of...