Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5399829 | Journal of Luminescence | 2014 | 7 Pages |
Abstract
Pristine tris-(8-hydroxyquionoline)aluminum(Alq3) and (Alq3/ZnO hybrid) composites containing different weight percentages (5Â wt%, 10Â wt%, 20Â wt%, 30Â wt%, 40Â wt% and 50Â wt%) of ZnO in Alq3 were synthesized and coated on to a glass substrate using the dip coating method. The optimum concentration of ZnO in Alq3 films to get the best luminescence yield has been identified. XRD pattern reveals the amorphous nature of pure Alq3 film. The Alq3 films containing different weight percentages of ZnO show the presence of crystalline ZnO in Alq3/ZnO composite films. The FTIR spectrum confirms the formation of quinoline with absorption in the region 600â800Â cmâ1. The hybrid Alq3/ZnO composite films indicate the presence of ZnâO vibration band along with the corresponding Alq3 band. The band gap (HOMO-LUMO) of Alq3 film was calculated using absorption spectra and it is 2.87Â eV for pristine films while it is 3.26Â eV, 3.21Â eV, 3.14Â eV, 3.10Â eV, 3.13Â eV and 3.20Â eV for the composite films containing 5-50Â wt% of ZnO. The photoluminescence (PL) spectra of Alq3 films show a maximum PL intensity at 514Â nm when excited at 390Â nm. The ZnO incorporated composite films (Alq3/ZnO) exhibit an emission in 485Â nm and 514Â nm. The composite films containing 30Â wt% of ZnO exhibit maximum luminescence yield.
Related Topics
Physical Sciences and Engineering
Chemistry
Physical and Theoretical Chemistry
Authors
M. Cuba, G. Muralidharan,