Fabrication of high performance based deep-blue OLED with benzodioxin-6-amine-styryl-triphenylamine and carbazole hosts as electroluminescent materials.
- 1. Manushyaa Blossom Pvt. Ltd., Chennai, Tamil Nadu, 600102, India.
- 2. Department of Biotechnology, School of Life Sciences, Pondicherry University (A Central University), Puducherry, 605014, India.
- 3. Centre for Nanoscience and Technology, MSGET, Pondicherry University (A Central University), Puducherry, 605014, India. maninano@pondiuni.ac.in.
- 4. College of Graduate Studies, UNESCO-UNISA Africa Chair in Nanosciences-Nanotechnology, Muckleneuk Ridge, PO Box 392, Pretoria, South Africa. maninano@pondiuni.ac.in.
- 5. Nanosciences African Network (NANOAFNET), iThemba LABS-National Research Foundation, 1 Old Faure Road, Somerset West, PO Box 722, Western Cape, 7129, South Africa. maninano@pondiuni.ac.in.
- 6. College of Graduate Studies, UNESCO-UNISA Africa Chair in Nanosciences-Nanotechnology, Muckleneuk Ridge, PO Box 392, Pretoria, South Africa. maaza@tlabs.ac.za.
- 7. Nanosciences African Network (NANOAFNET), iThemba LABS-National Research Foundation, 1 Old Faure Road, Somerset West, PO Box 722, Western Cape, 7129, South Africa. maaza@tlabs.ac.za.
- 8. Department of Biotechnology, School of Life Sciences, Pondicherry University (A Central University), Puducherry, 605014, India. abhishek.m@pondiuni.ac.in.
Description
The present study reports synthesis of phenathroimidazole derivatives structures following donor-acceptor relation for high performance deep-blue light emitting diodes. Herein, methyl substituted benzodioxin-6-amine phenanthroimidazoles Cz-SBDPI and TPA-SBDPI derivatives that provide the blue light were designed and synthesized. These Cz-SBDPI and TPA-SBDPI show higher glass transition (Tg) temperatures of 199 and 194 °C and demonstrate enhanced thermal properties. Apart from enhanced thermal stability these compounds also exhibit superior photophysical, electrochemical and electroluminescent properties. The non-doped carbazole based device display improved electroluminescent performances than those of TPA-based devices. The strong orbital-coupling due to decreased energy barrier between Cz-SBDPI transitions result in deep blue emission with CIE-0.15, 0.06. For non-doped Cz-SBDPI device; high L (brightness):12,984 cd/m2; ηc (current efficiency): 5.9 cd/A; ηp (power efficiency): 5.7 lm/W and ηex (external quantum efficiency): 6.2% was observed. The results show that the D-A emitters can serve as simple but also as an effective approach to devise cheap electroluminescent materials that has high efficiency and can serve as OLED devices.
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Publication Details
Journal article
Journal:
Scientific reports
Publisher:
Springer Science and Business Media LLC
ISSN:
20452322
Volume:
14
Pages:
2432
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Funding
Financial Support
UNESCO-UNISA Africa Chair in Nanosciences-Nanotechnology, South Africa
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References
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Cui, D. et al. Enhanced performance of OLED based on molecular orientation of em...
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Huang, J. et al. Construction of efficient solid emitters with tetraphenylethene...
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Huang, H. et al. Controllably tunable phenanthroimidazole\u2013carbazole hybrid ...
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