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首页> 外文期刊>Journal of Applied Polymer Science >Low-potential electrochemical polymerization of 6-nitroindole and characterization of its polymers
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Low-potential electrochemical polymerization of 6-nitroindole and characterization of its polymers

机译:6-硝基吲哚的低电位电化学聚合及其聚合物的表征

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Conducting polymers bearing nitro substituents are very important from both academic and industrial viewpoints. However, it is very difficult to electrosynthesize such conducting polymers because of the strong electron-withdrawing effect of nitro groups. In this article, we describe the electrochemical synthesis of films of a new conducting polymer, high-quality poly(6-nitroindole) (P6NI), by direct anodic oxidation of 6-nitroindole in boron trifluoride diethyl etherate containing 10% (v/v) diethyl ether. The oxidation potential onset of 6-nitroindole in this medium has been measured to be just 0.98 V versus a saturated calomel electrode (SCE), which is much lower than that determined in acetonitrile containing 0.1 mol/L tetrabutylammonium tetrafluoroborate (1.6 V vs SCE). Thermal studies have revealed that P6NI displays good thermal stability. The electrical conductivity of the P6NI films has been measured to be 0.08 S/cm. Structural studies have shown that the polymerization of the 6-nitroindole ring occurs mainly at the 2,3-positions. Fluorescence spectral studies have shown that the principal excitation and emission peaks of P6NI are at 416 and 535 nm, respectively, with a fluorescence quantum yield of 0.05. All these properties of P6NI films may facilitate their potential applications in various fields, such as electrochemical sensors and green-light-emitting materials. To the best of our knowledge, this is the first report on the electrosynthesis and characterization of 6-nitro-substituted polyindole films. (c) 2007 Wiley Periodicals, Inc.
机译:从学术和工业角度来看,带有硝基取代基的导电聚合物都非常重要。但是,由于硝基具有强的吸电子作用,因此很难电合成这种导电聚合物。在本文中,我们描述了在含有10%(v / v)的三氟化硼二乙醚中,通过6-硝基吲哚的直接阳极氧化,对新型导电聚合物,高质量的聚(6-硝基吲哚)(P6NI)薄膜的电化学合成方法。 ) 乙醚。与饱和甘汞电极(SCE)相比,该介质中6-硝基吲哚的氧化电势起始值仅为0.98 V,远低于含0.1 mol / L四氟硼酸四丁基铵的乙腈中的电势(1.6 V vs SCE) 。热学研究表明,P6NI具有良好的热稳定性。经测量,P6NI膜的电导率为0.08 S / cm。结构研究表明6-硝基吲哚环的聚合主要发生在2,3-位。荧光光谱研究表明,P6NI的主要激发和发射峰分别在416和535 nm处,荧光量子产率为0.05。 P6NI膜的所有这些特性可能会促进其在各种领域的潜在应用,例如电化学传感器和绿色发光材料。据我们所知,这是关于6-硝基取代的聚吲哚薄膜的电合成和表征的第一份报告。 (c)2007年Wiley Periodicals,Inc.

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