Efficient 1.54μm light emitting diode with nanometer thick polycrystalline Si anode and organic sandwich structure
Author:
Publisher
AIP Publishing
Subject
Physics and Astronomy (miscellaneous)
Link
http://aip.scitation.org/doi/pdf/10.1063/1.2220483
Reference17 articles.
1. 1.54‐μm luminescence of erbium‐implanted III‐V semiconductors and silicon
2. Electroluminescence of erbium–oxygen‐doped silicon diodes grown by molecular beam epitaxy
3. Room-temperature photoluminescence and electroluminescence from Er-doped silicon-rich silicon oxide
4. Erbium (III) tris(8-hydroxyquinoline) (ErQ): A potential material for silicon compatible 1.5 μm emitters
5. 1.54 μm electroluminescence from erbium (III) tris(8-hydroxyquinoline) (ErQ)-based organic light-emitting diodes
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1. Solution-processed Er3+-doped As3S7 chalcogenide films: optical properties and 1.5 μm photoluminescence activated by thermal treatment;Journal of Materials Chemistry C;2017
2. Optimizing efficiency of polycrystalline p-Si anode organic light-emitting diode;Rare Metals;2016-05-07
3. Highly efficient phosphorescent organic light-emitting diode with a nanometer-thick Ni silicide / polycrystalline p-Si composite anode;Optics Express;2010-07-13
4. Near-Infrared Luminescence of Nine-Coordinate Neodymium Complexes with Benzimidazole-Substituted 8-Hydroxyquinolines;Inorganic Chemistry;2008-08-22
5. Au generation centres doped n+-Si: hole-injection adjustable anode for efficient organic light emission;Journal of Physics D: Applied Physics;2008-07-10
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