CA 77:62126, abstract of Recl Trav Chim Pays-Bas, 1972, 91(5), 667-670.* |
C.W. Tang, et al., “Organic Electroluminescent Diodes”, 51 Appl. Phys. Lett., 913 (1987). |
S.R. Forrest, et al., “Organic Emitters Promise a New Generation of Displays”, Laser Focus World, (Feb. 1995). |
Baldo, et al., “Very high efficiency green organic light-emitting devices based on electrophosphorescence”, 75 Applied Physics Letters, 4-6, (1999). |
C.H. Chen, et al., “Recent developments in molecular organic electroluminescent materials”, Macromolecular Symposia, 125, 1-48 (1997). |
M.A. Baldo, et al., “Highly efficient phosphorescent emission from organic electroluminescent devices”, Nature, vol. 395, 151-154, (Sep. 1998). |
H. Aziz, et al., “Degradation Mechanism of Small Molecule-Based Organic Light-Emitting Devices”, Science, 283, 1900-1902 (Mar. 19, 1999). |
A.C. Cope, et al., “Substituted Cyclooctatraenes from Substituted Acetylenes”, J. Am. Chem. Soc., 73, 3536 (1951). |
C.W. Tang, et al., “Electroluminescence of doped organic films,” 65 J. Appl. Phys., 3610-3616, (1989). |
V. Bulovic, et al., “Bright, saturated, red-to-yellow organic light-emitting devices based on polarization-induced spectral shifts,” Chem. Phys. Lett., 287, 455-460 (1998). |
H.J.A. Dartnall, et al., 220 Proc. Roy. Soc. B (London), 115-130 (1983). |
H. Guo, et al., “Synthesis of High Molecular Weight Copolymers by Ruthenium-Catalyzed Step-Growth Copolymerization of Acetophenone with α,ω-Dienes”, Macromolecules, 28, 5686-5687 (1995). |
G. Schröder, Cyclooctatetraenes, Verlag-Chemie GmbH, Weinheim, Germany (1965). |
F.A.L. Anet, et al., “Ring Inversion and Bond Shift in Cyclooctatetraene Derivatives”, J. Am. Chem. Soc., 86, 3576 (1964). |
J.R. Leto, et al., “Tetrasubstituted Cyclooctatetraenes: Catalytic Cyclotetramerization of Propiolic Acid Esters with Tetrakis-(phosphorus trihalide)-Nickel(0) Complexes”, J. Am. Chem. Soc., 83, 2944 (1961). |
J.I. Levison, et al., “Transition-metal Complexes containing Phosphorus Ligands. Part III. Convenient Syntheses of Some Triphenylphosphine Complexes of the Platinum Metals”, J. Chem. Soc., A., 2947 (1970). |
A. Vogel, Vogel's Textbook of Practical Organic Chemistry, 4th Ed., Longman, London, England, p. 351 (1978). |
M. Cariou, “Anodic Oxidation of Diarylacetylenes and Diaryldiacetylenes: Electrosynthesis of Diaroyl-Stilbenes and Acetylenic α- and γ-Diketones”, Tetrahedron, 47(4/5), 799 (1991). |
A. Sarkar, et al., “A Convenient Synthesis of Aromatic-Ring Substituted Diacetylenes”, Helv. Chim. Acta., 82, 138 (1999). |
S.R. Forrest, “Ultrathin Organic Films Grown by Organic Molecular Beam Deposition and Related Techniques,” Chemical Reviews, 1997, 97, pp. 1793-1896. |
A.E. Van der Hout-Lodder, et al., “Regiospecific two-step conversion of a diaryl-substituted acetylene into an octaarylcyclooctatetraene”, Chemical Abstracts 77:62126, abstract of Recl Trav Chim Pays-Bas, 1972, 91(5), 667-670. |