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Chain Amplification in Photoreactions of N-Alkoxypyridinium Salts with Alcohols:Mechanism and Kinetics

机译:N-烷氧基吡啶鎓盐与醇的光反应中的链扩增:机理和动力学

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摘要

Photosensitized electron transfer from a variety of singlet- and triplet-excited donors to N-methoxypyridinium salts leads to N-O bond cleavage.Hydrogen atom abstraction by the resulting methoxy radical from an added alcohol generates an a-hydroxy radical that reduces another pyridinium molecule,thus leading to chain propagation.For example,thioxanthone-sensitized reactions of 4-cyano-N-methoxypyridinium,P1,with several aliphatic and benzyl alcohols gave quantum yields for products formation (an aldehyde or a ketone and protonated 4-cyanopyridinium) of approx15-20,at reactant concentrations of approx0.02-0.04 M.The reaction can also be sensitized with triplet benzopheone,which in this case acts as an electron donor.Energetic limitations on chain propagation are imposed by the relationship between the oxidation potential of the alpha-hydroxy radical and the reduction potential of the pyridinium salt.The chain reactions proceed despite approx0.25 eV endothermicity for the electron-transfer step.Chain reactions with the harder-to-reduce 4-phenyl-N-methoxypyridinium,however,are limited in scope because of increased endothermicity for electron transfer.The thioxanthone-sensitized reaction of P1 with benzhydrol was studied in detail by a combination of steady state and transient kinetics.The bimolecular rate constants for the chain propagation reactions:hydrogen atom abstraction by the methoxy radical and electron transfer from the diphenylketyl radical to P1 are approx6 x 10~6 and 1.1 x 10~6 M~(-1) s~(-1),respectively.The kinetic data indicate that deuterium atom abstraction by the methoxy radical from the solvent,acetonitrile-d_3,is a dominant chain-terminating process.Because of a large deuterium isotope effect,approx7,the quantum amplification is strongly suppressed when the reaction is carried out in acetonitrile.
机译:从各种单线态和三线态激发的供体到N-甲氧基吡啶鎓盐的光敏电子转移导致NO键断裂。从添加的醇中产生的甲氧基基团引起的氢原子抽象产生一个a-羟基基团,该基团还原了另一个吡啶鎓分子,因此例如,4-氰基-N-甲氧基吡啶鎓(P1)与几种脂肪族和苄醇的噻吨酮敏化反应产生的产物(醛或酮和质子化的4-氰基吡啶鎓)的量子产率约为15- 20,反应物浓度约为0.02-0.04 M.该反应还可以用三重态二苯甲酮(在这种情况下起电子给体的作用)进行敏化.α氧化电位之间的关系对链增长产生了能量限制-羟基自由基和吡啶鎓盐的还原电位。尽管电子传输的吸热度约为0.25 eV,但链反应仍在进行然而,由于电子转移的吸热性增加,与难于还原的4-苯基-N-甲氧基吡啶鎓的链式反应的范围受到了限制。通过组合研究了P1与苯并噻吨酮的敏化反应链增长反应的双分子速率常数:甲氧基自由基夺取氢原子和电子从二苯基酮基自由基向P1的转移分别约为6 x 10〜6和1.1 x 10〜6 M〜(-1动力学数据表明,由甲氧基从溶剂乙腈-d_3提取氘原子是主要的链终止过程。由于氘同位素效应大,约7,量子当反应在乙腈中进行时,扩增被强烈抑制。

著录项

  • 来源
    《The Journal of Organic Chemistry》 |2005年第17期|p.6809-6819|共11页
  • 作者单位

    Research Laboratories,Eastman Kodak Company,Rochester,New York 14650-2109;

    Research Laboratories,Eastman Kodak Company,Rochester,New York 14650-2109;

    Research Laboratories,Eastman Kodak Company,Rochester,New York 14650-2109;

  • 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

  • 入库时间 2022-08-18 00:03:13

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