Polymer Nanocomposites Containing Carbon Nanotubes

Полимерные нанокомпозиты, содержащие углеродные нанотрубки
Mohammad Moniruzzaman, Karen I. Winey
2006-07-07

carbon nanotubesin situ polymerizationmelt mixingnanotube dispersionpolymer nanocomposites
We review the present state of polymer nanocomposites research in which the fillers are single-wall or multiwall carbon nanotubes. By way of background we provide a brief synopsis about carbon nanotube materials and their suspensions. We summarize and critique various nanotube/polymer composite fabrication methods including solution mixing, melt mixing, and in situ polymerization with a particular emphasis on evaluating the dispersion state of the nanotubes. We discuss mechanical, electrical, rheological, thermal, and flammability properties separately and how these physical properties depend on the size, aspect ratio, loading, dispersion state, and alignment of nanotubes within polymer nanocomposites. Finally, we summarize the current challenges to and opportunities for efficiently translating the extraordinary properties of carbon nanotubes to polymer matrices in hopes of facilitating progress in this emerging area.
1
Mechanical, electrical, rheological, thermal, and flammability properties depend on nanotube size, aspect ratio, loading, dispersion, and alignment.
2
Solution mixing, melt mixing, and in situ polymerization are compared, with nanotube dispersion identified as a central fabrication consideration.
3
The review evaluates polymer nanocomposites reinforced with single-wall and multiwall carbon nanotubes.
4
The review identifies efficient transfer of carbon nanotubes’ exceptional properties to polymer matrices as a major unresolved challenge and research opportunity.

Polymer nanocomposites containing single-wall or multiwall carbon nanotube fillers

The dependence of mechanical, electrical, rheological, thermal, and flammability properties on carbon-nanotube size, aspect ratio, loading, dispersion state, and alignment, including the effectiveness of composite fabrication methods

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2006-07-07
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Mohammad Moniruzzaman
Karen I. Winey
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