화학공학소재연구정보센터
Journal of Polymer Science Part A: Polymer Chemistry, Vol.45, No.5, 809-821, 2007
Simple synthesis, photophysics, and electrolominescent properties of poly[2,7-bis(4-tert-butylstyryl)fluorene-9, 9-diyl-alt-alkane-alpha,omega-diyl]
simple synthetic route was used for the synthesis of a novel series of alternating copolymers based on substituted 2,7-distyrylfluorene bridged through alkylene chains. First, 2,7-dibromofluorene was reacted with 2 equiv of butyllithium, and this was followed by a treatment with 1 equiv of alpha,omega-dibrornoalkane to yield the intermediate, poly(2,7-dibromofluorene-9,9-diyl-alt-alkane-alpha,omega-diyl). (1) Heck coupling of the latter with 1-tert-butyl-4-vinylbenzene afforded the target, poly[2,7-bis(4-tertbutylstyryl)fluorene-9,9-diyl-alt-alkane-alpha,omega-co-diyl] (2). The two versions of 2 (2a and 2b which have hexane and decane, respectively, as alkane groups) were readily soluble in common organic solvents. Their glass-transition temperature was relatively low (52 and 87 degrees C). An intense blue photoluminescence emission with maxima at about 408 and 409 nm was observed in tetrahydrofuran solutions, whereas thin films exhibited an orange emission with maxima at 569 and 588 nm. Very large redshifts of the photoluminescence maxima and Stokes shifts in thin films indicated strong aggregation in the solid state. Both polymers oxidized and reduced irreversibly. Single-layer light-emitting diodes with hole-injecting indium tin oxide and electron-injecting aluminum electrodes were fabricated. They emitted orange light with external electroluminescence efficiencies of 0.52 and 0.36% photon/electron, as determined in lightemitting diodes made of 2a and 2b, with alkylenes of (CH2)(6) and (CH2)(10), respectively. An increase in the external electroluminescence efficiency up to 1.5% was reached in light-emitting diodes made of polymer blends consisting of 2a and poly(9,9-dihexadecylfluorene-2,7-diyl), which emitted blue-white light. (c) 2007 Wiley Periodicals, Inc.