Investigation of FIrpic in PhOLEDs via LC/MS technique

Author:

Sivasubramaniam Varatharajan1,Brodkorb Florian1,Hanning Stephanie1,Loebl Hans2,Elsbergen Volker2,Boerner Herbert2,Scherf Ullrich3,Kreyenschmidt Martin1

Affiliation:

1. 1Department Chemical Engineering, University of Applied Sciences Münster, Steinfurt, 48565, Germany

2. 2Philips Technologie GmbH-Philips Research, Aachen, 52066, Germany

3. 3Department of Macromolecular Chemistry and Technology of Polymers, Bergische University of Wuppertal, Wuppertal, 42097, Germany

Abstract

AbstractThe commercial breakthrough of phosphorescent organic white light sources is presently hampered due to the unavailability of a stable blue phosphorescent emitter material. Moreover, only few analytical investigations have been made regarding the chemical degradation of the phosphorescent emitter materials during the processing or the operation of the devices. Organic light emitting devices (OLEDs) containing phosphorescent metal complexes with iridium as central ion were investigated. Special attention was paid to the chemical degradation of the material. The devices were analyzed by means of high performance liquid chromatography coupled with mass spectrometry (HPLC/MS). Electron spray ionization (ESI) was employed as ionization source. Isomerization phenomena of the blue-green emitting heteroleptic iridium complex FIrpic could be observed after the device manufacture and after operation. These findings could give hints on the mechanisms that influence the lifetime of PhOLEDs based on FIrpic or similar blue emitters.

Publisher

Walter de Gruyter GmbH

Subject

Materials Chemistry,General Chemistry

Reference21 articles.

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2. http dx org;Hung;Mater Sci Eng,2002

3. http dx org;Tang;Appl Phys Lett,1987

4. http dx org;Grandin;Electron,2003

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