首页> 外文期刊>The Journal of Organic Chemistry >Azulene-Substituted Aromatic Amines.Synthesis and Amphoteric Redox Behavior of N,N-Di(6-azulenyl)-p-toluidine and N,N,N',N'-Tetra(6-azulenyl)-p-phenylenediamine and Their Derivatives
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Azulene-Substituted Aromatic Amines.Synthesis and Amphoteric Redox Behavior of N,N-Di(6-azulenyl)-p-toluidine and N,N,N',N'-Tetra(6-azulenyl)-p-phenylenediamine and Their Derivatives

机译:氮杂取代的芳香胺N,N-二(6-氮杂烯基)-对甲苯胺和N,N,N',N'-四(6-氮杂烯基)-对苯二胺及其衍生物的合成和两性氧化还原行为

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摘要

N,N-Di(6-azulenyl)-p-toluidine (la) and N,N,N',N'-tetra(6-azulenyl)-p-phenylenediamine (2a) and their derivatives with 1.3-bis(ethoxycarbonyl) substituents on each 6-azulenyl group (1b and 2b) were prepared by Pd-catalyzed amine azulenylation and characterized as a study into new aromatic amines for multistage amphoteric redox materials.The redox behavior of each compound was characterized by cyclic voltammetry.These compounds undergo facile reduction to stable anion radicals and dianion diradicals owing to the resonance stabilization between the 6-azulenyl groups and exhibit electrochemical oxidation depending on the amine subunits.The ESR measurement of anion radicals and a dianion diradical generated by the electrochemical reduction of amine Ib and diamine 2b revealed that the unpaired electron of these radicals delocalizes over the entire azulene ring including the central nitrogen atoms.UV-vis spectral analysis of amines la,b and diamines 2a.b,taken during the electrochemical reduction,exhibited a gradual decrease of the absorption bands of the neutral species along with an increase of the new absorption maxima at 625,605,640.and 610 nm.respectively,with the development of well-defined isosbcstic points at 502.562.478,and 545 nm.respectively.As indicated by a combined ESR and UV-vis spectral study,the species giving rise to the new absorption maxima are concluded to be the generation of anion radicals and dianion diradicals of aromatic amines and diamines with high thermodynamic stability.
机译:N,N-二(6-氮杂烯基)-对甲苯胺(Ia)和N,N,N',N'-四(6-氮杂烯基)-对苯二胺(2a)及其衍生物与1.3-双(乙氧基羰基)通过钯催化的胺氮杂烯基化反应制备每个6-氮杂烯基(1b和2b)上的取代基,并对其进行表征,以研究用于多级两性氧化还原材料的新型芳香胺,并通过循环伏安法表征每种化合物的氧化还原行为。由于6-氮杂烯基之间的共振稳定作用,容易进行还原为稳定的阴离子自由基和二价阴离子基团,并根据胺亚基表现出电化学氧化作用.ESR测量阴离子自由基和由胺还原Ib和Ib生成的二价阴离子自由基。二胺2b揭示了这些自由基的不成对电子在包括中心氮原子在内的整个a环上离域化。在电化学还原过程中对胺1a,b和二胺2a.b进行紫外可见光谱分析因此,随着明确定义的等压点在502.562.478和545 nm处的发展,中性物种的吸收带逐渐减小,新吸收最大值在625,605,640。和610 nm处增加。结合ESR和UV-vis光谱研究表明,引起新的最大吸收的物种是具有高热力学稳定性的芳香胺和二胺的阴离子自由基和二价阴离子自由基的产生。

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  • 来源
    《The Journal of Organic Chemistry》 |2005年第6期|p.2285-2293|共9页
  • 作者单位

    Department of Materials Science and Technology,Faculty of Science and Technology,Hirosaki University Hirosaki 036-8561,Department of Chemistry,Graduate School of Science,Tohoku University,Sendai 980-8578,and Institute of Multidisciplinary Research fo;

    Department of Materials Science and Technology,Faculty of Science and Technology,Hirosaki University Hirosaki 036-8561,Department of Chemistry,Graduate School of Science,Tohoku University,Sendai 980-8578,and Institute of Multidisciplinary Research fo;

    Department of Materials Science and Technology,Faculty of Science and Technology,Hirosaki University Hirosaki 036-8561,Department of Chemistry,Graduate School of Science,Tohoku University,Sendai 980-8578,and Institute of Multidisciplinary Research fo;

    Department of Materials Science and Technology,Faculty of Science and Technology,Hirosaki University Hirosaki 036-8561,Department of Chemistry,Graduate School of Science,Tohoku University,Sendai 980-8578,and Institute of Multidisciplinary Research fo;

    Department of Materials Science and Technology,Faculty of Science and Technology,Hirosaki University Hirosaki 036-8561,Department of Chemistry,Graduate School of Science,Tohoku University,Sendai 980-8578,and Institute of Multidisciplinary Research fo;

    Department of Materials Science and Technology,Faculty of Science and Technology,Hirosaki University Hirosaki 036-8561,Department of Chemistry,Graduate School of Science,Tohoku University,Sendai 980-8578,and Institute of Multidisciplinary Research fo;

    Department of Materials Science and Technology,Faculty of Science and Technology,Hirosaki University Hirosaki 036-8561,Department of Chemistry,Graduate School of Science,Tohoku University,Sendai 980-8578,and Institute of Multidisciplinary Research fo;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
  • 关键词

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