DocumentCode :
1280299
Title :
The role of surface plasmons in organic light-emitting diodes
Author :
Hobson, P.A. ; Wasey, J.A.E. ; Sage, I. ; Barnes, W.L.
Author_Institution :
Sch. of Phys., Exeter Univ., UK
Volume :
8
Issue :
2
fYear :
2002
Firstpage :
378
Lastpage :
386
Abstract :
Organic light-emitting diodes typically take the form of an optical microcavity in which one layer is a metallic cathode. Coupling between emissive species in the light emitting layer and surface plasmon (SP) modes associated with the metallic cathode result in a loss of efficiency; an aspect often discussed but not so far fully quantified. Here we numerically model the extent of this problem, both for organic light-emitting diodes based on small molecules (Alq3) and those based on conjugated polymers (MEH-PPV). We show that SP modes can significantly detract from device efficiency, particularly those based on small molecules. We then report measurements of photo- and electroluminescence from organic light-emitting diodes incorporating wavelength scale periodic structure. These data demonstrate the existence of the SP modes in organic light-emitting diodes. Finally we consider ways in which the problems associated with SPs might be overcome, and may even be turned to advantage
Keywords :
electroluminescence; light emitting diodes; micro-optics; optical resonators; organic compounds; photoluminescence; surface plasmons; conjugated polymers; device efficiency; electroluminescence; light emitting layer; metallic cathode; numerically model; optical microcavity; organic light-emitting diodes; periodic structure; photoluminescence; small molecules; surface plasmon modes; surface plasmons; Cathodes; Microcavities; Numerical models; Optical coupling; Optical losses; Optical surface waves; Organic light emitting diodes; Plasmons; Stimulated emission; Wavelength measurement;
fLanguage :
English
Journal_Title :
Selected Topics in Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
1077-260X
Type :
jour
DOI :
10.1109/2944.999193
Filename :
999193
Link To Document :
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