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Entry |
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Organic EL Devices Doped With a Quinacridone Derivative Showing Higher Brightness and Luminescent Efficiency. |
High Bright Organic Thin Film EL Devices Using a Li Alloy Cathode. |
A Calcium Oxide Can be Reduced by Aluminum. |
Metal Handbook p. 88. |
Metal Handbook p. 87. |
Polymer Light-Emitting Electrochemical Cells. |
Physical Review Letters (vol. 14, No. 7). |
IEEE Transactions on Electron Diodes (vol. 40, No. 7). |
Organic Electroluminescent Diodes Society for Information Display International Symposium Digest of Technical Papers (vol. XXVIII). |
Organic EL Cells Using Alkaline Metal Compounds as Electron Injection Materials. |
Electroluminescence from Polyvinylcarbazole. |
Zugang L et al.: “Effects of microcavities on the spontaneous emission of organic light-emitting diodes with ZnO:A1 as the anode” J. Phys.: Condensed Matter, 1998, vol. 10, pp. 6019-6025, XP-000964847. |
So S. et al.: “Interference effects in bilayer organic light-emitting diodes”, Applied Physics Letters, Apr. 5, 1999, vol. 74, No. 14, pp. 1939-1941, XP-000827174 “Vertical-Cavity Organic Light-Emitting Diode Display”, IBM Technical Disclosure Bulletin, Sep. 1997, vol. 40, No. 09, pp. 165-167, XP-000735697. |
Berggren M. et al.: “Polymer light-emitting diodes placed in microcavities”, Synthethic Metals 76, 1996, pp. 121-123, XP-000992227. |