Pei, et al., Thiophene-Based Conjugated Polymers for Light-Emitting Diodes: Effect of Aryl Grups on Photoluminescence Efficiency and Redox Behavior, Macromolecules 2001, 34, 7241-7248. |
Liu, et al., Synthesis, Characterization, and Structure-Property Relationship of Novel Fluorene-Thiophene-Based Conjugated Copolymers, Marcromolecules 2000, 33, 8945-8952. |
R. H. Partridge, Electroluminescence from Polyvinylcarbazole Films: 4. Electroluminescence Using Higher Work Function Cathodes, Polym., 24, 755 (1983). |
R. H. Partridge, Electroluminescence From Polyvinylcarbazole Films: 3. Electroluminescent Devices, Polymer, 1983, vol. 24, 748-754. |
Morin, et al., Blue-Light-Emitting Conjugated Polymers Derived From 2,7-Carbazoles, Macromol, Rapid Commun. 2002, 23, 1032-1036. |
Spiliopoulos, et al., Blue-Light-Emitting Poly(phenylenevinylene)s with Alkoxyphenyl Substituents: Synthesis and Optical Properties, Macromolecules 2002, 35, 2149-2156. |
Jang, et al., New Orange-Red Light Emitting Diode From Poly([2-(5-Cyclo-Hexylmethoxypentyloxy)-5-Methoxy-1,4-Phenylenevinylene], Macromol. Chem. Phys. 200, 1101-1106 (1999). |
Zheng, et al., Synthesis and Characterization fo Fluorenediylvinylene and Thiophenediylvinylene-Containing Terphenylene-Based Copolymers, Marcromolecules, 35, 9939 (2002). |
Burn, et al., Chemical Tuning of the Electronic Properties of Poly(p-phenylenevinylene)-Based Copolymers, J. Am. Chem. Soc., 1993, 115, 10117-10124. |
Ko, et al., Novel Poly(p-phenylenevinylene)s with an Electron-Withdrawing Cyanophenyl Group, Macromolecules 2002, 35, 6217-6223. |
D. Neher, Polyfluorene Hompolymers: Conjugated Liquid-Crystalline Polymers for Bright Blue Emission and Polarized Eelctroluminescence, Macromol. Rapid Commun., 2001, 22, 1365-1385. |
Johansson, et al., Synthesis and Characterization of Highly Soluble Phenyl-Substituted Poly(p-phenylenevinylenes), Macromolecules 2000, 33, 2525-2529. |
Andersson, et al., “Substituted polythiophenes designed for optoelectronic devices and conductors”, J. Mater Chem., 9, 1933-1940 (1999). |
Pinto, et al., “Light-emitting copolymers of cyano-containing PPV-based chromophores and a flexible spacer”, Polymer, 41, 2603-2611 (2000). |
Kelly, “Flat Panel Displays. Advanced Organic Materials”, Royal Society of Chemistry, 2000, pp. 155-177. |
Shoustikov, et al., Electroluminescence Color Tuning by Dye Doping in Organic Light-Emitting Diodes, IEEE Journal of Selected Topics in Quantum Electronics, vol. 4, No. 1 (1998). |
Djurovich, et al., “Ir(III) Cyclometalated Complexes as Efficient Phosphorescent Emitters in Polymer Blend and Organic LEDs”, Polymer Preprints, 41(1), 770-771 (2000). |
Chen, et al., “Bright White Polymer Double-Layer LEDs”, Polymer Preprints 41(1), 835 (2000). |
Hu, et al., “Bright Red Electroluminescence from a Dye/Copolymer Blend”, J. Appl. Phys., 83(11) 6002 (1998). |
Quaranta, et al., “Synthesis and characterization of dye-containing fluorinated polyimide thin films”, Synthetic Metals, 124, 75-77 (2001). |
Müller, et al., “Dye Containing Polymer Beads as Photonic Crystals”, Polymer Preprints, 41(1), 810 (2000). |
Sisk, et al., “Designing a better optoelectronic device”, Chemical Innovation, May 2000. |
Kocher, et al., “Patterning of Oriented Photofunctional Polymer Systems Through Selective Photobleaching**”, Advanced Functional Materials, 11(1), 31 (2001). |
Hwang, et al., “Synthesis and characterization of new poly(aryl ether)s containing alternate emitting and electron transporting chromophores”, Polymer, 41, 6581-6587 (2000). |
US 2001/0026879, Chen, et al., Pub. Date: Oct. 4, 2001, (CO)Polymers Based on Vinyl Units and Use Thereof in Electroluminescent Devices, Filed: May 8, 2001. |
Hu, et al., “Electroluminescence of pure poly(N-vinylcarbazole) and its blends with a multiblock copolymer”, J. Appl. Phys., 76(4), 2419 (1994). |
Yang, et al., “Electroluminescence in Polymers”, Macromol. Symp., 124, 83-87 (1997). |
Frederiksen,et al., “Electroluminescence of Organic Thin Films based on Blends of Polystyrene and Fluorescent Dyes”, J. Mater. Chem., 4(5), 675-678 (1994). |