Stable geometries and magnetic properties of single-walled carbon nanotubes doped with 3d transition metals: A first-principles study

Yosuke Yagi, Tina M. Briere, Marcel H. F. Sluiter, Vijay Kumar, Amir A. Farajian, and Yoshiyuki Kawazoe
Phys. Rev. B 69, 075414 – Published 26 February 2004
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Abstract

The interaction of 3d transition metal atoms and dimers with a single-walled armchair carbon nanotube has been investigated by first-principles density functional calculations. For Fe-, Co-, and Ni-doped (4,4) nanotubes, outside adsorption sites are the most favorable. The interactions are largely ferromagnetic for Fe and Co, with the local magnetic moments of the dimers being similar to the free dimers. However, for Ni most structures are nonmagnetic. We have also examined the effects of curvature with calculations for graphene and the (8,8) nanotube. For the (8,8) nanotube, the interaction of Co becomes more favorable inside the nanotube. Doping of a single Co atom transforms the (4,4) and (8,8) nanotubes into half-metals. These results are useful for spintronics applications and could help in the development of magnetic nanostructures and metallic nanotube coatings.

  • Received 7 September 2003

DOI:https://doi.org/10.1103/PhysRevB.69.075414

©2004 American Physical Society

Authors & Affiliations

Yosuke Yagi1, Tina M. Briere1, Marcel H. F. Sluiter1, Vijay Kumar1,2, Amir A. Farajian1, and Yoshiyuki Kawazoe1

  • 1Institute for Materials Research, Tohoku University, Aoba-ku, Sendai 980-8577, Japan
  • 2Dr. Vijay Kumar Foundation, 45 Bazaar Street, K. K. Nagar (West), Chennai 600 078, India

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Vol. 69, Iss. 7 — 15 February 2004

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