Device performance and polymer morphology in polymer light emitting diodes: The control of device electrical properties and metal/polymer contact
- 15 July 2000
- journal article
- Published by AIP Publishing in Journal of Applied Physics
- Vol. 88 (2), 605-609
- https://doi.org/10.1063/1.373799
Abstract
We recently demonstrated that the morphology of a spin-cast polymer film can be controlled by the proper choice of solvent, polymer solution concentration, and spin speed [Y. Shi, J. Liu, and Y. Yang, J. Appl. Phys. 87, 4254 (2000)]. In this article, we report the correlation between the morphology and the electrical properties of poly(2-methoxy-5-(2’-ethyl-hexyloxy)-1,4-phenylene vinylene based light emitting diodes. The performance of these devices, such as device turn-on voltage, current injection efficiency, and quantum efficiency, shows a strong dependence on thin film processing conditions. It is found that aromatic solvents and nonaromatic solvents have very different effects on device performance, which suggests that the solvation induced morphology effect is one of the controlling factors for polymer-based optoelectronic devices.Keywords
This publication has 17 references indexed in Scilit:
- Hole limited recombination in polymer light-emitting diodesApplied Physics Letters, 1999
- Conjugated polymer aggregates in solution: Control of interchain interactionsThe Journal of Chemical Physics, 1999
- The roles of injection and mobility in organic light emitting diodesJournal of Applied Physics, 1998
- Microstructure of thin films of photoluminescent semiconducting polymersPolymer, 1998
- Temperature dependent electron-hole recombination in polymer light-emitting diodesApplied Physics Letters, 1997
- Direct Measurement of Conjugated Polymer Electronic Excitation Energies Using Metal/Polymer/Metal StructuresPhysical Review Letters, 1996
- Carrier tunneling and device characteristics in polymer light-emitting diodesJournal of Applied Physics, 1994
- Flexible light-emitting diodes made from soluble conducting polymersNature, 1992
- Visible light emission from semiconducting polymer diodesApplied Physics Letters, 1991
- Light-emitting diodes based on conjugated polymersNature, 1990