Publication | Closed Access
Effect of Molecular Packing on Corannulene-Based Materials Electroluminescence
84
Citations
47
References
2011
Year
Optical MaterialsEngineeringChemistryLuminescence PropertySpectroscopic PropertyOptical PropertiesOptical SpectroscopyNanophotonicsPhotoluminescencePhysicsNanotechnologyNon-linear OpticOptoelectronic MaterialsMolecular MaterialExcitonic PropertiesBulk CrystalsNanomaterialsNatural SciencesSpectroscopyApplied PhysicsCorannulene-based Materials ElectroluminescenceDetailed Theoretical AnalysisMolecule-based MaterialOptoelectronics
The present investigation reports for the first time a detailed theoretical analysis of the optical absorption spectra of corannulene-based materials using state-of-the-art first-principles many-body GW-BSE theory. The study specifically addresses the nature of optical excitations for predictions regarding suitability for device fabrication. The well-defined structure-correlation relationship in functionalized corannulenes is used in a focused investigation of the predicted optoelectronic properties in both the isolated state and bulk crystals. The findings suggest that the excitonic properties are strongly dependent on the specific substituent group as well as the crystalline arrangement. Arylethynyl-substituted corannulene derivatives are shown to be the most suitable for device purposes.
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