English

Electronic Structure of Single- and Multiple-shell Carbon Fullerenes

Materials Science 2009-10-22 v1

Abstract

We study the electronic states of giant single-shell and the recently discovered nested multi-shell carbon fullerenes within the tight-binding approximation. We use two different approaches, one based on iterations and the other on symmetry, to obtain the π\pi-state energy spectra of large fullerene cages: C240C_{240}, C540C_{540}, C960C_{960}, C1500C_{1500}, C2160C_{2160} and C2940C_{2940}. Our iteration technique reduces the dimensionality of the problem by more than one order of magnitude (factors of 12\sim 12 and 2020), while the symmetry-based approach reduces it by a factor of 1010. We also find formulae for the highest occupied and lowest unoccupied molecular orbital (HOMO and LUMO) energies of C60n2C_{60{\cdot}n^{2}} fullerenes as a function of nn, demonstrating a tendency towards metallic regime for increasing nn. For multi-shell fullerenes, we analytically obtain the eigenvalues of the intershell interaction.

Keywords

Cite

@article{arxiv.cond-mat/9312040,
  title  = {Electronic Structure of Single- and Multiple-shell Carbon Fullerenes},
  author = {Yeong-Lieh Lin and Franco Nori},
  journal= {arXiv preprint arXiv:cond-mat/9312040},
  year   = {2009}
}

Comments

5 pages, RevTex, 2 figures upon request (to be published in Physical Review B, Feb. 1994)

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