| Literature DB >> 25685461 |
Abstract
Aluminium tris(4-morpholinyl-8-hydroxyquinoline) has been synthesized and characterized. The photoluminescence measurements showed that the new derivative is blue shifted and has relative photoluminescence quantum yield two times higher compared to the pristine Al tris(8-hydroxyquinoline). Deferential scanning colorimetric studies revealed that the newly synthesized Alq3 derivative in this work is amorphous material with the highest transition glass temperature value among the reported amorphous Alq3 derivatives.Entities:
Keywords: Alq3 derivatives; Amorphous materials; Organic light emitting diodes; Photoluminescence
Year: 2012 PMID: 25685461 PMCID: PMC4294783 DOI: 10.1016/j.jare.2012.09.003
Source DB: PubMed Journal: J Adv Res ISSN: 2090-1224 Impact factor: 10.479
Scheme 1The synthetic route for complex 3.
Fig. 1Absorption spectra of Alq3 and complex 3.
Fig. 2The PL emission spectra of Alq3 and complex 3, the inserted photo is for Alq3 (right, green) and complex 3 (left, bluish) under UV light.
The photophysical and thermal properties of Alq3 and complex 3.
| Complex | Optical band gap | ||||
|---|---|---|---|---|---|
| Alq3 | 387 (5.9 × 103) | 522 | 1 | 3.19 | 174 |
| 375 (16.9 × 103) | 489 | 2.02 | 3.31 | 232 |
Absorption maximum (nm) and molar absorptivity (L mol−1 cm−1) in brackets.
Photoluminescence emission maximum (nm) of 20 μM of sample in chloroform.
Relative photoluminescence quantum yield with respect to Alq3 giving a quantum yield of 1.00 to Alq3 (the absolute quantum yield for Alq3 in chloroform is 0.223 [25]).
Estimated from the UV–vis spectra by using E = hC/ν.
Fig. 3Transition glass endothermic peak in the DSC thermogram of complex 3.