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LINEAR AND HYPERBRANCHED POLYMERS WITH HIGH THERMAL STABILITY AND LUMINESCENCE EFFICIENCY
Authors:Jacky Wing Yip Lam  Jing-dong Luo  Han Peng  Zhi-liang Xie  Kai-tian Xue  Yu-ping Dong  Lin Cheng  Cheng-feng Qiu  Hoi Sing Kwok  Ben-zhong Tang
Institution:a.Departments of Chemistry and b.Electrical & Electronic Engineering Hong Kong University of Science & Technology Clear Water Bay; Kowloon; Hong Kong China
Abstract: New acetylene monomers, 6-{(1-naphthylethynyl-4-phenyl)carbonyl]oxy}-1-pheny-1-hexyne (1), 2, 5-diethynyl-thiophene (3), and 4,4'-diethynylbiphenyl(6) were synthesized. Homopolymerization of 1 and copolycyclotrimerizations of 3and 6 with 1-heptyne and 1-octyne have been achieved with WCl6- and TaCl5-Ph4Sn catalysts, respectively, giving solublelinear disubstituted polyacetylene (2) and hyperbranched polyarylenes (5 and 8) with high molecular weights (up to 1.2×105) in high yields (up to 98%).The structures and properties of the polymers are characterized and evaluated by IR,NMR,TGA,UV,photoluminescence(PL),and electroluminescence (EL) analyses.All the polymers possess high thermal stability and emit strong blue light upon photoexcitation.The intensity of the emitted light is greater than that of poly(1-phenyl-1-octyne),a well-known highly luminescent disubstituted polyacetylene.Little aggregation-induced red shift in the PL was observed in the thin films of the polymers.By constructing a multi-layer EL device,high EL quantum yield (0.18%) has been achieved in 2,which are the best results for substituted polyacetylenes attainable so far.
Keywords:Disubstituted polyacetylene  Hyperbranched polyarylene  Light emission
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