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Anion-π Complexes of Halides with p-Benzoquinones: Structures, Thermodynamics, and Criteria of Charge Transfer to Electron Transfer Transition

机译:具有p-苯并醌的卤化物的阴离子-π络合物:结构,热力学和电荷转移的电荷转移标准

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摘要

Interchange of complex formation and electron-transfer reactions between halide anions and p-benzoquinones were established via UV-vis spectral and X-ray structural measurements and computational analysis. Solution-phase interaction of the p-benzoquinone acceptors with Cl-, Br-, or I- donors led to the formation of anion-pi- complexes showing strong absorption bands in the UV-vis range. Formation constants and calculated interaction energies of these complexes increased, and donor/acceptor separations decreased with increasing reduction potentials of p-benzoquinones. Mulliken correlation and NBO analysis indicated a charge transfer nature of these anion-pi associates. Most notably, the increase of the acceptor strength led to a transition between the formation of the persistent anion-a complexes and electron-transfer reactions. Thermodynamic analysis accounted for the experimental observations of anion radicals and trihalide anions in solutions of p-benzoquinones with iodide or (for the strongest acceptor) bromide donors. Kinetics of these processes indicated that anion-pi complexes represent critical intermediates of the redox reactions. In contrast to Cl-, Br-, or I- anions, interaction of p-benzoquinones with F- anions led to the formation of sigma-complexes, and the appearance of anion radicals in such systems was related to the follow-up reactions of these complexes.
机译:通过UV-Vis光谱和X射线结构测量和计算分析建立卤化物阴离子和对苯醌之间的复杂形成和电子转移反应的互换。对CL-,BR-或I-供体的溶液相相互作用导致形成阴离子 - 络合物,在UV-VIS范围内显示出强吸收带。这些复合物的形成常数和计算的相互作用能量增加,并且随着对苯并醌的减少电位的增加而降低供体/受体分离。 Mulliken相关性和NBO分析表明了这些阴离子PI伙伴的电荷转移性质。最值得注意的是,受体强度的增加导致形成持续阴离子的形成与电子转移反应之间的过渡。热力学分析占对碘化物或(最强受体)溴化物的对苯醌溶液中的阴离子自由基和三际阴离子的实验观察。这些方法的动力学表明阴离子 - PI复合物代表氧化还原反应的关键中间体。与Cl-,Br-或I阴离膜相比,对苯并醌与F阴离子的相互作用导致σ复合物的形成,并且这种系统中的阴离子自由基的外观与后续反应有关这些复合物。

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  • 来源
    《Journal of the American Chemical Society》 |2019年第23期|9338-9348|共11页
  • 作者单位

    Ball State Univ Dept Chem Muncie IN 47306 USA;

    Purdue Univ Dept Chem W Lafayette IN 47907 USA;

    Ball State Univ Dept Chem Muncie IN 47306 USA;

  • 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
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