Separating the roles of electrons and holes in the organic magnetoresistance of aluminum tris(8-hydroxyquinoline) organic light emitting diodes
Author:
Publisher
AIP Publishing
Subject
General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.3000454
Reference11 articles.
1. Magnetic field effects on emission and current in Alq3-based electroluminescent diodes
2. Large magnetoresistance at room temperature in semiconducting polymer sandwich devices
3. Large magnetoresistance at room-temperature in small-molecular-weight organic semiconductor sandwich devices
4. Hyperfine interaction and magnetoresistance in organic semiconductors
5. Effect of spin-orbit coupling on magnetoresistance in organic semiconductors
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1. Hole-exciton interaction induced high field decay of magneto-electroluminescence in Alq3-based organic light-emitting diodes at room temperature;Applied Physics Letters;2016-01-11
2. The role of triplet bipolarons in organic magnetoconductance;Organic Electronics;2015-02
3. Ferromagnetic-organic interfacial states and their role on low voltage current injection in tris-8-hydroxyquinloline (Alq3) organic spin valves;Applied Physics Letters;2014-11-17
4. The transition from bipolaron to triplet-polaron magnetoresistance in a single layer organic semiconductor device;Organic Electronics;2014-08
5. The importance of holes in aluminium tris-8-hydroxyquinoline (Alq3) devices with Fe and NiFe contacts;Applied Physics Letters;2014-01-06
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