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首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Highly substituted poly(2,3-diphenyl-1,4-phenylenevinylene) derivatives having bulky phenyl and fluorenyl pendant groups: Synthesis, characterization, and electro-optical properties
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Highly substituted poly(2,3-diphenyl-1,4-phenylenevinylene) derivatives having bulky phenyl and fluorenyl pendant groups: Synthesis, characterization, and electro-optical properties

机译:具有庞大的苯基和芴基侧基的高度取代的聚(2,3-二苯基-1,4-亚苯基亚乙烯基)衍生物:合成,表征和电光性质

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摘要

Two series of poly(2,3-diphenyl-1,4-phenylenevinylene) (DP-PPV) derivatives containing multiple bulky substituents were synthesized. In the first series, two different groups were incorporated on C-5,6 positions of the phenylene moiety to increase steric hindrance and to obtain blue-shifted emissions. In the second series, bulky fluorenyl groups with two hexyl chains on the C-9 position were introduced on two phenyl pendants to increase the solubility as well as steric hindrance to prevent close packing of the main chain. Polymers with high molecular weights and fine-tuned electro-optical properties were obtained by controlling the feed ratio of different monomers during polymerization. The maximum photoluminescent emissions of the thin films are located between 384 and 541 nm. Cyclic voltammetric analysis reveals that the band gaps of these light-emitting materials are in the range from 2.4 to 3.3 eV A double-layer EL device with the configuration of ITO/PEDOT/P4/Ca/Al emitted pure green light with CIE ' 1931 at (0.24, 0.5). Using copolymer P6 as the emissive layer, the maximum luminescence and current efficiency were both improved when compared with the homopolymer P4. (c) 2006 Wiley Periodicals, Inc.
机译:合成了两个包含多个大取代基的聚(2,3-二苯基-1,4-亚苯基亚乙烯基)(DP-PPV)衍生物系列。在第一个系列中,两个不同的基团结合在亚苯基部分的C-5,6位上,以增加空间位阻并获得蓝移发射。在第二系列中,在两个苯基侧基上引入了在C-9位置具有两个己基链的庞大的芴基,以增加溶解度和位阻,以防止主链紧密堆积。通过控制聚合过程中不同单体的进料比,可以得到具有高分子量和微调电光性质的聚合物。薄膜的最大光致发光发射位于384和541 nm之间。循环伏安分析表明,这些发光材料的带隙在2.4至3.3 eV的范围内。具有ITO / PEDOT / P4 / Ca / Al构造的双层EL器件具有CIE'1931发出的纯绿色光在(0.24,0.5)。与均聚物P4相比,使用共聚物P6作为发光层,最大发光度和电流效率均得​​到改善。 (c)2006年Wiley Periodicals,Inc.

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