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首页> 外文期刊>Reactive & Functional Polymers >Synthesis, light-emitting and optical limiting properties of new donor-acceptor conjugated polymers derived from 3,5-dicyano-2,4,6-tristyrylpyridine
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Synthesis, light-emitting and optical limiting properties of new donor-acceptor conjugated polymers derived from 3,5-dicyano-2,4,6-tristyrylpyridine

机译:衍生自3,5-二氰基-2,4,6-三苯乙烯基吡啶的新型供体-受体共轭聚合物的合成,发光和光学限制性质

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摘要

Three donor-acceptor conjugated polymers P1-P3 derived from 3,5-dicyano-2,4,6-tristyrylpyridine (PY) have been synthesized through the Knoevenagel reaction. The polymers are characterized by ~1H NMR, FTIR, UV-vis and elemental analysis. P1 and P2 have high molecular weight up to 2.3 x 10~5 and 29.5 x 10~5 and show excellent solubility in common solvents such as THF, CH_2Cl_2, CHCl_3 and DMF. They all have relatively good thermal stability with the 5% weight loss temperature at 402, 264 and 364 ? in argon, respectively. The fluorescence spectrum of P1 displayed the maximum at 588 nm in chloroform solution and at 596 nm in thin film. Two bilayer light-emitting diodes, with 5% or 10% of P1 fabricated in poly (N-vinylcarbazole) (PVK), emitted light at 549 or 552 nm, respectively, and with the increasing content of P1, the electroluminescence efficiencies of the blend devices increased. The optical limiting performance of P1 had been measured at 532 nm with nanosecond pulse, the limiting threshold of P1 was 728 mJ/cm~2, and the throughput of P1 was limited to 344 mJ/cm~2 for incident fluence as high as 1.1 J/cm~2. The preliminary electroluminescent results and optical limiting effect of P1 suggested that P1 may be promising as light-emitting polymer and optical limiting material.
机译:通过Knoevenagel反应合成了三种衍生自3,5-二氰基-2,4,6-三苯乙烯基吡啶(PY)的供体-受体共轭聚合物P1-P3。聚合物的特征在于〜1H NMR,FTIR,UV-vis和元素分析。 P1和P2具有高达2.3 x 10〜5和29.5 x 10〜5的高分子量,并且在THF,CH_2Cl_2,CHCl_3和DMF等常见溶剂中显示出极好的溶解性。它们均具有相对良好的热稳定性,失重温度为402、264和364°C时为5%。分别在氩气中。 P1的荧光光谱在氯仿溶液中在588 nm和薄膜中在596 nm处显示出最大值。两个双层发光二极管,分别用聚(N-乙烯基咔唑)(PVK)制成P1的5%或10%,分别发射549或552 nm的光,并且随着P1含量的增加,P1的电致发光效率混合设备增加。用纳秒脉冲在532 nm处测量了P1的光学极限性能,P1的极限阈值为728 mJ / cm〜2,入射光通量高达1.1时P1的通量被限制在344 mJ / cm〜2焦耳/厘米〜2。 P1的初步电致发光结果和光限制效应表明,P1有望作为发光聚合物和光限制材料。

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