Physics of Organic Light-Emitting Diodes
Physics of Organic Light-Emitting Diodes
Provides the fundamental concepts of OLED physics and light emitting materials including carrier mobility (which is vital for enhancing the efficiency of OLED technologies).
1. Introduction
1. Introduction
2. Light emission efficiency of OLED: External Quantum Efficiency
3. Fundamental mechanisms of light emission from condensed matters
4. Charge carrier injection and transportation in thin film
5. Emission and absorption spectra of organic semiconductors
6. Ground- and excited-state, and transition dipole moments
7. Origins of non-radiative transition
8. Electron spin revealed in electroluminescence performance
9. Triplet to singlet transition in OLEDs
10. Principles giving rise to carrier mobility
11. Ways to narrow emission band for excellent color beauty
12. Degradation mechanisms
13. Tandem-type OLEDs with intermediate layer with long life
14. Color tuning to UV- and near infrared-OLEDs
15. Functionalities of OLED device: OLED laser, Photovoltaics, and ECL cell
16. Concluding remarks: Recent advancements in OLED technology and future trends
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Tsuboi, Taiju
| ISBN | 9783527355747 |
|---|---|
| Article number | 9783527355747 |
| Media type | Book |
| Edition number | 1. Auflage |
| Copyright year | 2030 |
| Publisher | Wiley-VCH |