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Random poly(fluorenylene‐vinylene)s containing 3,7‐Dibenzothiophene‐5,5‐dioxide units: Synthesis,photophysical, and electroluminescence properties
Authors:Roberto Grisorio  Claudia Piliego  Pinalysa Cosma  Paola Fini  Piero Mastrorilli  Giuseppe Gigli  Gian Paolo Suranna  Cosimo Francesco Nobile
Institution:1. Dipartimento di Ingegneria delle Acque e di Chimica (DIAC), Politecnico di Bari, via Orabona, 4 I‐70125 Bari, Italy;2. National Nanotechnology Laboratories (NNL), CNR‐INFM, Lecce, Italy;3. Istituto Superiore Universitario di Formazione Interdisciplinare (ISUFI)‐sezione Nanoscienze, Lecce, Italy;4. Dipartimento di Chimica dell'Università di Bari, Campus Universitario‐Bari, Bari, Italy;5. Dipartimento di Chimica, Istituto per i Processi Chimico Fisici del CNR (IPCF), Bari, Italy;6. Dipartimento di Ingegneria dell'Innovazione, Università del Salento, Lecce, Italy
Abstract:The synthesis of new random poly(arylene‐vinylene)s containing the electron withdrawing 3,7‐dibenzothiophene‐5,5‐dioxide unit was achieved by the Suzuki–Heck cascade polymerization reaction. The properties of poly9,9‐bis(2‐ethylhexyl)‐2,7‐fluorenylene‐vinylene‐co‐3,7‐dibenzothiophene‐5,5‐dioxide‐vinylene] (50/50 mol/mol, P1 ) and poly1,4‐bis(2‐ethylhexyloxy)‐2,5‐phenylene‐vinylene‐co‐3,7‐dibenzothiophene‐5,5‐dioxide‐vinylene] (50/50 mol/mol, P2 ) were compared with those of terpolymers obtained by combining the fluorene, dibenzothiophene, and 1,4‐bis(2‐ethylexyloxy)benzene in 20/40/40 ( P3 ), 50/25/25 ( P4 ), and 80/10/10 ( P5 ) molar ratios. The polymers were characterized by 1H NMR and IR, whereas their thermal properties were investigated by TGA and DSC. Polymers P1–5 are blue–green emitters in solution (λem between 481 and 521 nm) whereas a profound red shift observed in the solid state is emission (λem from 578 to 608 nm) that can be attributed both to the charge transfer stabilization exerted by the polar medium and to intermolecular interactions occurring in the solid state. Cyclic voltammetry permitted the evaluation of the ionization potentials and also revealed a quasi‐reversible behavior in the reduction scans for the polymers ( P1–4 ) containing the higher amounts of 3,7‐dibenzothiophene‐5,5‐dioxide units. Electroluminescent devices with both ITO/PEDOT‐PSS/ P1–5 /Ca/Al (Type I) and ITO/PEDOT‐PSS/ P1–5 /Alq3/Ca/Al (Type II) configuration were fabricated showing a yellow to yellow–green emission. In the case of P4 , a luminance of 1835 cd/m2 and an efficiency of 0.25 cd/A at 14 V were obtained for the Type II devices. © 2009 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 47: 2093–2104, 2009
Keywords:conjugated polymers  copolymerization  dibenzothiophene 5  5‐dioxide  electroluminescence  fluorene  light‐emitting diodes  photophysics  poly(arylene‐vinylene)s  Suzuki–  Heck cascade
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