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December 23, 2000The Journal of Physical Chemistry B274 citations

Plasma Activation of Carbon Nanotubes for Chemical Modification

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QCQidao ChenLDLiming DaiMGMei Gao

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Abstract

A novel approach for chemical modification of carbon nanotubes was developed, which involved radio frequency glow-discharge plasma activation, followed by chemical reactions characteristic of the plasma-generated functional groups. For instance, amino-dextran chains have been immobilized onto acetaldehyde-plasma-treated aligned carbon nanotubes through the formation of Schiff-base linkages, which were further stabilized by reduction with sodium cyanoborohydride. Using the same reaction, we have also chemically grafted periodate-oxidized dextran chains pre-labeled with fluorescein onto ethylenediamine-plasma-treated carbon nanotubes. The fluorescein labeling allows the surface immobilization reaction to be followed simply by photoluminescence measurements. The resulting polysaccharide-grafted carbon nanotubes are very hydrophilic, as demonstrated by X-ray photoelectron spectroscopic and air/water contact angle measurements.

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Cite This Study

Chen et al. (2000) studied this question.

synapsesocial.com/papers/6a20b6c4e2a660d176234fa7https://doi.org/10.1021/jp003385g
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