Phenanthrene Adsorption from Solution on Single Wall Carbon Nanotubes

Адсорбция фенантрена из раствора на одностенных углеродных нанотрубках
Suzana Gotovac Atlagić, Yoshiyuki Hattori, Daisuke Noguchi, Junichi Miyamoto, Mamiko Kanamaru, Shigenori Utsumi, Hirofumi Kanoh, Katsumi Kaneko
2006-07-29

Anionic surfactantsPhenanthrene adsorptionSingle-wall carbon nanotubesUV-visible spectrophotometryX-ray photoelectron spectroscopy
Phenanthrene was adsorbed from ethanol solution to the surface of single wall carbon nanotubes, which were previously physically and chemically characterized. Different anionic surfactants were added in the solutions to enhance the phenanthrene solubility and apparently have also improved the dispersion of two respective nanotube samples used. Adsorbed amount was determined through the concentration difference measured by UV-visible spectrophotometry. Results suggest that adsorption of phenanthrene is extremely improved in the case of nanotube purified with higher quality. These findings were confirmed by X-ray photoelectron spectroscopy. The influence of the surfactant on the adsorption kinetics of phenanthrene is suggested to be significant as well.
1
Anionic surfactants enhanced phenanthrene solubility and apparently improved dispersion of the nanotube samples.
2
Higher-quality purified nanotubes exhibited a substantial increase in phenanthrene adsorption compared with the other sample.
3
Phenanthrene adsorption amounts were quantified from concentration differences using UV-visible spectrophotometry and confirmed by X-ray photoelectron spectroscopy.
4
Phenanthrene was adsorbed from ethanol solution onto single-wall carbon nanotubes characterized using physical and chemical methods.
5
The surfactant was suggested to significantly influence phenanthrene adsorption kinetics.

phenanthrene adsorbed from ethanol solution onto single-wall carbon nanotubes

phenanthrene adsorption amount, kinetics, and dependence on nanotube purity and anionic surfactants

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2006-07-29
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Suzana Gotovac Atlagić
Yoshiyuki Hattori
Daisuke Noguchi
Junichi Miyamoto
Mamiko Kanamaru
Shigenori Utsumi
Hirofumi Kanoh
Katsumi Kaneko
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