Electronic structure of highly ordered films of self-assembled graphitic nanocolumns

Highly ordered, several nanometers thick films of alkylated large planar, polycyclic aromatic hydrocarbon (PAH) molecules have been grown on semi-metallic molybdenum disulfide substrates. The films are characterized by a two-dimensional lateral arrangement of columns standing at the surface on a mac...

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Veröffentlicht in:Physical review. B, Condensed matter Condensed matter, 2003-11, Vol.68 (19), p.195414, Article 195414
Hauptverfasser: Friedlein, R., Crispin, X., Simpson, C. D., Watson, M. D., Jäckel, F., Osikowicz, W., Marciniak, S., de Jong, M. P., Samorí, P., Jönsson, S. K. M., Fahlman, M., Müllen, K., Rabe, J. P., Salaneck, W. R.
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Sprache:eng
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Zusammenfassung:Highly ordered, several nanometers thick films of alkylated large planar, polycyclic aromatic hydrocarbon (PAH) molecules have been grown on semi-metallic molybdenum disulfide substrates. The films are characterized by a two-dimensional lateral arrangement of columns standing at the surface on a macroscopic scale. The self-assembly of such insulated columns of face-to-face disks with surface-induced vertical alignment has been achieved directly from solution processing. Angle-resolved photoelectron spectra revealed a highly anisotropic quasi-one-dimensional electronic structure with an extended π-electronic wave function. An intermolecular dispersion of the highest occupied band of at least 0.15 eV along the stacking direction has been measured. A partial breakdown of the concept of quasimomentum due to the finite size of the nano-objects perpendicular to the stacks is observed.
ISSN:0163-1829
1550-235X
1098-0121
1095-3795
DOI:10.1103/PhysRevB.68.195414