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Kinetic Effects of Hydrogen Bonds on Proton-Coupled Electron Transfer from Phenols

机译:氢键对苯酚质子耦合电子转移的动力学影响

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摘要

The kinetics and mechanism of proton-coupled electron transfer (PCET) from a series of phenols to a laser flash generated [Ru(bpy)_3]~(3+) oxidant in aqueous solution was investigated.The reaction followed a concerted electron-proton transfer mechanism (CEP),both for the substituted phenols with an intramolecular hydrogen bond to a carboxylate group and for those where the proton was directly transferred to water.Without internal hydrogen bonds the concerted mechanism gave a characteristic pH-dependent rate for the phenol form that followed a Marcus free energy dependence,first reported for an intramolecular PCET in Sjodin,M.et al.J.Am.Chem.Soc.2000,122,3932-3962 and now demonstrated also for a bimolecular oxidation of unsubstituted phenol.With internal hydrogen bonds instead,the rate was no longer pH-dependent,because the proton was transferred to the carboxylate base.The results suggest that while a concerted reaction has a relatively high reorganization energy (lambda),this may be significantly reduced by the hydrogen bonds,allowing for a lower barrier reaction path.It is further suggested that this is a general mechanism by which proton-coupled electron transfer in radical enzymes and model complexes may be promoted by hydrogen bonding.This is different from,and possibly in addition to,the generally suggested effect of hydrogen bonds on PCET in enhancing the proton vibrational wave function overlap between the reactant and donor states.In addition we demonstrate how the mechanism for phenol oxidation changes from a stepwise electron transfer-proton transfer with a stronger oxidant to a CEP with a weaker oxidant,for the same series of phenols.The hydrogen bonded CEP reaction may thus allow for a low energy barrier path that can operate efficiently at low driving forces,which is ideal for PCET reactions in biological systems.
机译:研究了一系列酚在质子耦合电子转移过程中所产生的[Ru(bpy)_3]〜(3+)氧化剂的激光动力学和机理,并研究了电子质子的协同作用。转移机理(CEP),对于分子内具有与羧酸盐基团氢键键合的取代酚和质子直接转移至水中的那些都有效。无内氢键的协同机理为酚形式提供了特征性的pH依赖性速率在马库斯自由能依赖性之后,首先在Sjodin,M.et al.J.Am.Chem.Soc.2000,122,3932-3962中报道了分子内PCET,现在也证明了未取代苯酚的双分子氧化。相反,内部氢键的速率不再依赖于pH,因为质子转移到了羧酸根上。结果表明,尽管协同反应具有相对较高的重组能(lambda),但可能是进一步表明,这是氢键可促进自由基酶和模型配合物中质子偶联电子转移的一般机制,这不同于,也许还可能是,通常建议的氢键对PCET的作用会增强反应物和给体之间的质子振动波功能重叠。此外,我们证明了酚氧化的机理是如何从逐步电子转移—质子转移对于相同系列的苯酚,CEP的氧化剂比CEP的氧化剂更强。因此,氢键CEP反应可提供低能垒路径,该路径可在低驱动力下有效运行,这非常适合生物系统中的PCET反应。

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  • 来源
    《Journal of the American Chemical Society》 |2006年第40期|p.13076-13083|共8页
  • 作者单位

    Contribution from the Chemical Physics,Department of Photochemistry and Molecular Science,Uppsala University,Box 523,SE-751 20 Uppsala,Sweden,Department of Organic Chemistry,Arrhenius Laboratory,Stockholm University,SE-106 91 Stockholm,Sweden,and Dep;

  • 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 化学;
  • 关键词

  • 入库时间 2022-08-18 03:23:02

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