The Role of Surfactant Adsorption during Ultrasonication in the Dispersion of Single-Walled Carbon Nanotubes

Роль адсорбции поверхностно-активного вещества при ультразвуковой обработке в диспергировании одностенных углеродных нанотрубок
Michael S. Strano, Valerie C. Moore, Michael K. Miller, Mathew J. Allen, Erik H. Hároz, Carter Kittrell, Robert H. Hauge, R. E. Smalley
2003-02-01

kinetic modelsingle-walled carbon nanotubessurfactant adsorptionsurfactant-assisted dispersionultrasonication
The ionic surfactant-assisted dispersion of single-walled carbon nanotubes in aqueous solution has been studied by Raman and fluorescent spectroscopy during ultrasonic processing. During the process, an equilibrium is established between free individuals and aggregates or bundles that limits the concentration of the former that is possible. This equilibrium is a function of free sodium dodecyl sulfate concentration. At surfactant concentrations below this value, fluorescence is shifted to a lower energy due to an increase in micropolarity from water association at the nanotube surface. The mechanism of dispersion is postulated as the formation of gaps or spaces at the bundle ends in the high shear environment of the ultrasonicated solution. Surfactant adsorption and diffusion then propagate this space along the bundle length, thereby separating the individual nanotube. The former is found to be controlling, with the use of a derived kinetic model for the dispersion process and extraction of the characteristic rate of nanotube isolation.
1
Below a critical surfactant concentration, nanotube fluorescence shifts to lower energy because water association increases micropolarity at the nanotube surface.
2
Dispersion is proposed to begin with gap formation at bundle ends under ultrasonic shear, followed by surfactant adsorption and diffusion that separates nanotubes along the bundle.
3
Surfactant adsorption, rather than diffusion, controls the dispersion rate; a kinetic model enables extraction of the characteristic nanotube-isolation rate.
4
The dispersion equilibrium depends on the concentration of free sodium dodecyl sulfate surfactant in solution.
5
Ultrasonication establishes an equilibrium between individually dispersed nanotubes and aggregates or bundles, limiting the achievable concentration of isolated nanotubes.

Single-walled carbon nanotubes dispersed in aqueous ionic-surfactant solution during ultrasonication

The role and kinetics of surfactant adsorption in nanotube-bundle separation and individual nanotube isolation during ultrasonication

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2003-02-01
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Authors
Michael S. Strano
Valerie C. Moore
Michael K. Miller
Mathew J. Allen
Erik H. Hároz
Carter Kittrell
Robert H. Hauge
R. E. Smalley
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