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research article

Internal electric field and charge distribution in multilayer organic light-emitting diodes

Tutis, E.
•
Berner, D.  
•
Zuppiroli, L.  
2003
Journal Of Applied Physics

The internal electric field in multilayer organic light-emitting diodes (OLEDs) is investigated using a combination of experimental measurement and numerical device modeling. This approach results in a detailed understanding of the functioning of a multilayer OLED. The method is applied to a standard device structure that has received broad attention in literature. From the experimental part, we have demonstrated that the average electric field inside the hole transport layer is larger than or equal to the average field in the emission layer over the entire current range. Device simulations fully clarify the situation, giving an insight into the space charge effects as well as the hole and the electron current distributions in the device. In particular, we find that there is a leakage of unrecombined holes towards the cathode at low voltages. We also find a strong variation of the electric field in the tris(8-hydroxyquinolinato)aluminum layer

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Type
research article
DOI
10.1063/1.1558208
Web of Science ID

WOS:000181863100033

Author(s)
Tutis, E.
Berner, D.  
Zuppiroli, L.  
Date Issued

2003

Publisher

AIP

Published in
Journal Of Applied Physics
Volume

93

Issue

8

Article Number

4594

Subjects

organic light emitting diodes

•

space charge

•

internal electric field

•

charge distribution

•

multilayer organic light emitting diode

•

space charge

•

electron current distribution

•

hole current distribution

•

tris(8-hydroxyquinolinato)aluminum layer

Note

Inst. of Phys., Zagreb, Croatia

7585725

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LOMM  
Available on Infoscience
April 3, 2007
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/4220
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