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Direct Observation of Ylide and Enol Intermediates Formed in Competition with Wolff Rearrangement of Photoexcited Ethyl Diazoacetoacetate

机译:直接观察与光激发重氮乙酰乙酸乙酯的Wolff重排竞争而形成的叶立德和烯醇中间体

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摘要

The photoexcitation of α-diazocarbonyl compounds produces ketenes by both concerted and stepwise Wolff rearrangements. The stepwise mechanism proceeds through singlet carbene intermediates which can also participate in bimolecular reactions such as ylide formation with nucleophiles. Here, ultrafast transient infrared absorption spectroscopy is used to show competitive production of singlet carbene and ketene intermediates from the photoexcitation of ethyl diazoacetoacetate. We provide direct spectroscopic evidence for ylide formation by singlet α-carbonyl carbene capture in aprotic nucleophilic solvents (with ylide bands at 1625 cm~(-1) in acetonitrile and 1586 and 1635 cm~(-1) in tetrahydrofuran) and report an enol-mediated pathway for singlet a-carbonyl carbene reaction with alcohols (ethanol or tert-butanol) identified by an absorption band at 1694 cm""1; however, we find no evidence for a previously proposed ylide pathway. The a-carbonyl carbene is monitored by using a band with solvent-dependent wavenumber in the range 1627-1645 cm~(-1). A computed two-dimensional cut of the potential energy surface for the reaction of the singlet a-carbonyl carbene with methanol shows that the enol forms without a barrier and that this reaction is promoted by an intermolecular hydrogen bond from methanol to the carbonyl oxygen atom. The corresponding ylide structure lies higher in energy, with a barrierless downhill path to isomerization to the enol.
机译:α-重氮羰基化合物的光激发通过协同的和逐步的Wolff重排产生烯酮。逐步机理通过单线态卡宾中间体进行,该中间体也可以参与双分子反应,例如与亲核试剂形成叶立德。在这里,超快速瞬态红外吸收光谱用于显示重氮乙酰乙酸乙酯的光激发产生单线碳烯和乙烯酮中间体的竞争性产物。我们为非质子亲核溶剂中的单重态α-羰基卡宾捕获形成叶立德提供了直接的光谱证据(乙腈中的叶立德谱带在1625 cm〜(-1),四氢呋喃中的叶立谱带为1586和1635 cm〜(-1)),并报告了烯醇-单链α-羰基卡宾与醇(乙醇或叔丁醇)反应的介导途径,该途径通过在1694 cm“” 1处的吸收带确定;但是,我们没有发现以前提出的叶立德途径的证据。通过使用溶剂依赖波数在1627-1645 cm〜(-1)范围内的谱带监控α-羰基卡宾。单线态α-羰基卡宾与甲醇反应的势能面的二维计算表明,烯醇的形成没有障碍,并且该反应是由甲醇到羰基氧原子的分子间氢键促进的。相应的叶立德结构能量较高,具有无障碍的下坡途径,可以异构化为烯醇。

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  • 来源
    《Journal of the American Chemical Society》 |2020年第17期|7836-7844|共9页
  • 作者单位

    School of Chemistry University of Bristol Bristol BS8 1TS U.K;

    School of Chemistry University of Bristol Bristol BS8 ITS U.K.;

  • 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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  • 入库时间 2022-08-18 05:28:35

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