Light extraction and optical loss mechanisms in organic light-emitting diodes: Influence of the emitter quantum efficiency

被引:238
作者
Nowy, Stefan [1 ]
Krummacher, Benjamin C. [2 ]
Frischeisen, Joerg [1 ]
Reinke, Nils A. [1 ]
Bruetting, Wolfgang [1 ]
机构
[1] Univ Augsburg, D-86135 Augsburg, Germany
[2] OLED Lighting, OSRAM Opto Semicond, D-93055 Regensburg, Germany
关键词
aluminium; calcium; excitons; indium compounds; optical losses; organic light emitting diodes; organic semiconductors; polaritons; surface plasmons; triplet state;
D O I
10.1063/1.3043800
中图分类号
O59 [应用物理学];
学科分类号
摘要
The internal quantum efficiency of organic light-emitting diodes (OLEDs) can reach values close to 100% if phosphorescent emitters to harvest triplet excitons are used; however, the fraction of light that is actually leaving the device is considerably less. Loss mechanisms are, for example, waveguiding in the organic layers and the substrate as well as the excitation of surface plasmon polaritons at metallic electrodes. Additionally, absorption in the organic layers and the electrodes can play a role. In this work we use numerical simulations to identify and quantify different loss mechanisms. Changing simulation parameters, for example, the distance of the emitter material to the cathode or thicknesses of the various layers, enables us to study their influence on the fraction of light leaving the OLED. An important parameter in these simulations and for the actual device is the radiative quantum efficiency q, which is defined as the efficiency of radiative exciton decay in an unbounded space filled by the emitting dye and its matrix. The simulations show that due to microcavity effects the radiative decay channel can be considerably changed in an OLED as compared to free space emission of a dipole. Thus the knowledge of the radiative quantum efficiency is crucial for the optimization of OLEDs. As an example, we present simulations of bottom-emitting OLEDs based on the well-known green emitter tris-(8-hydroxyquinoline) aluminum with transparent indium tin oxide anode and a calcium/aluminum cathode.
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页数:9
相关论文
共 35 条
[1]   Nearly 100% internal phosphorescence efficiency in an organic light-emitting device [J].
Adachi, C ;
Baldo, MA ;
Thompson, ME ;
Forrest, SR .
JOURNAL OF APPLIED PHYSICS, 2001, 90 (10) :5048-5051
[2]   Highly efficient phosphorescent emission from organic electroluminescent devices [J].
Baldo, MA ;
O'Brien, DF ;
You, Y ;
Shoustikov, A ;
Sibley, S ;
Thompson, ME ;
Forrest, SR .
NATURE, 1998, 395 (6698) :151-154
[3]  
Barnes WL, 1998, J MOD OPTIC, V45, P661, DOI 10.1080/09500349808230614
[4]   Effect of metal films on the photoluminescence and electroluminescence of conjugated polymers [J].
Becker, H ;
Burns, SE ;
Friend, RH .
PHYSICAL REVIEW B, 1997, 56 (04) :1893-1905
[5]  
BEIERLEIN TA, 2003, THESIS U BAYREUTH GE
[6]   Device physics of organic light-emitting diodes based on molecular materials [J].
Bruetting, Wolfgang ;
Berleb, Stefan ;
Mueckl, Anton G. .
ORGANIC ELECTRONICS, 2001, 2 (01) :1-36
[7]   Simplified calculation of dipole energy transport in a multilayer stack using dyadic Green's functions [J].
Celebi, K. ;
Heidel, T. D. ;
Baldo, M. A. .
OPTICS EXPRESS, 2007, 15 (04) :1762-1772
[8]  
Chance R.R., 1978, ADV CHEM PHYS, V37, P65, DOI DOI 10.1002/9780470142561.CH1
[9]   LIFETIME OF AN EMITTING MOLECULE NEAR A PARTIALLY REFLECTING SURFACE [J].
CHANCE, RR ;
PROCK, A ;
SILBEY, R .
JOURNAL OF CHEMICAL PHYSICS, 1974, 60 (07) :2744-2748
[10]   Thermal, structural and photophysical properties of the organic semiconductor Alq3 [J].
Cölle, M ;
Brütting, W .
PHYSICA STATUS SOLIDI A-APPLICATIONS AND MATERIALS SCIENCE, 2004, 201 (06) :1095-1115