首页> 外文期刊>Journal of the American Chemical Society >Photoinduced Hydrogen Abstraction from Phenols by Aromatic Ketones. A New Mechanism for Hydrogen Abstraction by Carbonyl n, pi* and pi, pi* Triplets
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Photoinduced Hydrogen Abstraction from Phenols by Aromatic Ketones. A New Mechanism for Hydrogen Abstraction by Carbonyl n, pi* and pi, pi* Triplets

机译:芳香酮从苯酚中光诱导氢提取。羰基n,pi *和pi,pi *三重态夺氢的新机理

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摘要

Nanosecond laser flash photolysis studies have been carried out of the kinetics of inter- and intramolecular phenolic hydrogen abstraction by alkoxyacetophenone, 5-alkoxyindanone, and 4-alkoxybenzophenone triplets in acetonitrile and benzene solution.Information on the geometric requirements for abstraction by carbonyl pi, pi* and pi, pi* triplets is derived from the results for a series of ketones which contain a para-phenolic moiety attached via a para-oxyethyl linkage. For all of these compounds,the deuterium kinetic isotope effect on the triplet lifetime in acetonitrile solution indicates that triplet decay is determined by the rate of intramolecular abstraction of the remote phenolic hydrogen, which yields the corresponding phenoxyl--hemipinacol biradical. The biradicals have also been detected, and are about an order of magnitude longer-lived than the triplet in each case. For three of the compounds, the rates of the intramolecular process follow the same trend as that observed in the ratesof bimolecular quenching of the parent methoxy-substituted ketones by p-cresol. Deviation from this trend is observed for the alkoxyindanone derivative, where an in-plane approach of the phenolic hydrogen to the carbonyl n-orbital is not possible. The trends in the rate constants for bimolecular quenching of a series of substituted beuzophenones by p-cresol indicate that for pi, pi* triplet abstractions, the quenching mechanism is different for electron donor-substituted and electron acceptor-substituted ketones. For pi, pi* triplets and donor-substituted (pi, pi* triplet) benzophenones, abstraction is proposed to occur by a mechanism involving the intermediacy of a hydrogen-bonded exciplex, which yields the corresponding radicals by sequential electron- and proton-transfer. The rate constant for quenching by this mechanism thus depends mainly on the basicity of the ketone triplet state and the oxidation potential of the phenol.
机译:已进行了纳秒激光闪光光解研究,研究了三乙氧基苯乙酮,5-烷氧基茚满酮和4-烷氧基二苯甲酮三联体在乙腈和苯溶液中分子间和分子内酚氢的吸收动力学。 *和pi,pi *三联体得自一系列酮的结果,这些酮含有通过对氧乙基键连接的对酚部分。对于所有这些化合物,氘动力学同位素对乙腈溶液中三重态寿命的影响表明,三重态的衰变取决于远程酚氢的分子内提取速率,从而产生了相应的苯氧基-半异丙醇双自由基。也已经检测到双自由基,并且在每种情况下双自由基的寿命比三重自由基的寿命长约一个数量级。对于三种化合物,分子内过程的速率遵循与对甲酚对母体甲氧基取代的酮的双分子猝灭速率观察到的趋势相同的趋势。对于烷氧基茚满酮衍生物,观察到与该趋势的偏差,其中酚氢到羰基n-轨道的面内途径是不可能的。对甲酚对一系列取代的苯甲酮类化合物进行双分子淬灭的速率常数趋势表明,对于pi,pi *三重态抽象,电子给体取代和电子受体取代的酮的猝灭机理不同。对于pi,pi *三联体和供体取代的(pi,pi *三重态)二苯甲酮,提出抽象化是通过涉及氢键合激基复合物的机理发生的,该机理通过顺序的电子和质子转移产生相应的自由基。因此,通过该机理淬灭的速率常数主要取决于酮三重态的碱性和苯酚的氧化电位。

著录项

  • 来源
    《Journal of the American Chemical Society》 |1996年第49期|p.12339-12348|共10页
  • 作者单位

    Contribution from the Department of Chemistry, McMaster University, 1280 Main Street West, Hamilton, Ontario L8S 4M1, Canada;

  • 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 03:25:49

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