Nanoparticle traffic on helical tracks: thermophoretic mass transport through carbon nanotubes.

Schoen, Philipp A E; Walther, Jens H; Arcidiacono, Salvatore; Poulikakos, Dimos; Koumoutsakos, Petros · Nano Lett · 2006

basic_science · Level V

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Abstract

Using molecular dynamics simulations, we demonstrate and quantify thermophoretic motion of solid gold nanoparticles inside carbon nanotubes subject to wall temperature gradients ranging from 0.4 to 25 K/nm. For temperature gradients below 1 K/nm, we find that the particles move "on tracks" in a predictable fashion as they follow unique helical orbits depending on the geometry of the carbon nanotubes. These findings markedly advance our knowledge of mass transport mechanisms relevant to nanoscale applications.

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