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MOLECULAR DESIGN OF LIGHT EMITTING POLYMERS
Authors:J W Yu  J K Kim  J M Hong  Y C Kim  H N Cho  D Y Kim  C Y Kim Polymer Materials Laboratory  Korea Institute of Science and Technology  P O Box  Cheongryang  Seoul -  Korea
Institution:J. W. Yu,J. K. Kim,J. M. Hong,Y. C. Kim,H. N. Cho,D. Y. Kim,C. Y. Kim Polymer Materials Laboratory,Korea Institute of Science and Technology,P. O. Box 131,Cheongryang,Seoul 130-650,Korea
Abstract:Fluorene-based alternating and statistical copolymers were synthesized by employing reaction methods of Wittig,Heck and Suzuki. The copolymers were classified into three groups with the photoluminescence (PL) emission maxima at420, 475 and 500 nm, respectively. Statistical copolymers with two chromophores having PL emission maxima at 420 and475 nm emitted light with the emission maximum at 475 nm on photoexcitation at 365 nm and improved the quantumefficiency by the energy transfer. However, the intramolecular energy transfer was inefficient compared to the intermolecularenergy transfer when the two chromophores were apart from each other in the range of the Forster critical distance. Fluorene-pyridinedivinylene alternating copolymer was synthesized by the Wittig reaction and found to have physical, electronic andelectrochemical properties of the individual units intact. The double-layered light emitting diode (LED) with the statisticalcopolymer as an emitting layer and the pyridine-containing copolymer as an electron transporting-hole blocking layer, whichwere sandwiched between ITO and Al, displayed a quantum efficiency of 0.1%.
Keywords:Light emitting polymers
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