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Smallest metallic nanorods using physical vapor deposition

  • Xiaobin Niu
  • , Stephen P. Stagon
  • , Hanchen Huang
  • , Jon Kevin Scott Baldwin
  • , Amit Misra

Research output: Contribution to journalArticlepeer-review

49 Scopus citations

Abstract

Physical vapor deposition provides a controllable means of growing two-dimensional metallic thin films and one-dimensional metallic nanorods. While theories exist for the growth of metallic thin films, their counterpart for the growth of metallic nanorods is absent. Because of this absence, the lower limit of the nanorod diameter is theoretically unknown; consequently the experimental pursuit of the smallest nanorods has no clear target. This Letter reports a closed-form theory that defines the diameter of the smallest metallic nanorods using physical vapor deposition. Further, the authors verify the theory using lattice kinetic Monte Carlo simulations and validate the theory using published experimental data. Finally, the authors carry out a series of theory-guided experiments to grow well-separated metallic nanorods of ∼10 nm in diameter, which are the smallest ever reported using physical vapor deposition.

Original languageEnglish
Article number136102
JournalPhysical Review Letters
Volume110
Issue number13
DOIs
StatePublished - Mar 28 2013

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