Electronic Delocalization in Discotic Liquid Crystals: A Joint Experimental and Theoretical Study
- 1 September 2004
- journal article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 126 (38) , 11889-11899
- https://doi.org/10.1021/ja048669j
Abstract
Discotic liquid crystals emerge as very attractive materials for organic-based (opto)electronics as they allow efficient charge and energy transport along self-organized molecular columns. Here, angle-resolved photoelectron spectroscopy (ARUPS) is used to investigate the electronic structure and supramolecular organization of the discotic molecule, hexakis(hexylthio)diquinoxalino[2,3-a:2',3'-c]phenazine, deposited on graphite. The ARUPS data reveal significant changes in the electronic properties when going from disordered to columnar phases, the main feature being a decrease in ionization potential by 1.8 eV following the appearance of new electronic states at low binding energy. This evolution is rationalized by quantum-chemical calculations performed on model stacks containing from two to six molecules, which illustrate the formation of a quasi-band structure with Bloch-like orbitals delocalized over several molecules in the column. The ARUPS data also point to an energy dispersion of the upper pi-bands in the columns by some 1.1 eV, therefore highlighting the strongly delocalized nature of the pi-electrons along the discotic stacks.Keywords
This publication has 44 references indexed in Scilit:
- Electronic structure of highly ordered films of self-assembled graphitic nanocolumnsPhysical Review B, 2003
- Intermolecular energy-band dispersion in PTCDA multilayersPhysical Review B, 2003
- Interchain Interactions in Organic π-Conjugated Materials: Impact on Electronic Structure, Optical Response, and Charge TransportAdvanced Materials, 2001
- Angle-resolved ultraviolet photoelectron spectroscopy of In-[perylene-3,4,9,10-tetracarboxylic dianhydride] systemJournal of Applied Physics, 2000
- Valence Electronic Structure of π-Conjugated Materials: Simulation of the Ultraviolet Photoelectron Spectra with Semiempirical Hartree−Fock ApproachesChemistry of Materials, 1999
- Angle-resolved ultraviolet photoelectron spectroscopy of thin films of bis(1,2,5-thiadiazolo)-p-quinobis (1,3-dithiole) on the MoS2 surfaceThe Journal of Chemical Physics, 1997
- Columnar mesophases of alkylated hexa‐peri‐hexabenzocoronenes with remarkably large phase widthsAdvanced Materials, 1996
- Intermolecular energy-band dispersion in oriented thin films of bis(1,2,5-thiadiazolo)-p-quinobis(1,3-dithiole) by angle-resolved photoemissionThe Journal of Chemical Physics, 1994
- Three-dimensional band structure of graphite studied by angle-resolved photoemission using ultraviolet synchrotron radiationPhysical Review B, 1984
- Organic solids: is energy-band theory enough?Physics Today, 1980