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Photoenolization of 2-(2-Methyl Benzoyl) Benzole Acid,Methyl Ester: Effect of E Photoenol Lifetime on the Photochemistry

机译:2-(2-甲基苯甲酰基)苯甲酸,甲基酯的光烯化作用:E光烯醇寿命对光化学的影响

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摘要

Photolysis of 3 in argon-saturated 2-propanol led to formation of 5 via intermolecular H-atom abstraction followed by lactonization.Irradiation of 4 in 2-propanol gave compounds 6 and 7 that also come from intermolecular H-atom abstraction.In contrast,photolysis of an oxygen-saturated solution of 3 in 2-propanol yields products 8,9,and 10,which were all formed from intramolecular H-atom abstraction and trapping of the corresponding biradical with oxygen.Laser flash photolysis of 3 in methanol showed formation of biradical 3BR (gamma_(max) 330 nm,and tau = 50 ns) via intramolecular H-atom abstraction as the main photoreactivity of 3.Biradical 3BR decayed into photoenols 3Z and 3E (gamma_(max) 390 nm,tau = 6.5 mus and r = 162 muS,respectively).In comparison,laser flash photolysis of 4 yielded photoenols 4Z and 4E (gamma_(max) 390 nm,tau = 15 muS and tau = 3.6 ms,respectively).Thus photoenol 3E is unusually short-lived,and therefore it does not undergo the intramolecular lactonization as we have observed for the analogous photoenol 1E.Photoenol 3Z decays back to 3 via an intramolecular 1,5-H shift,whereas photoenol 3E reforms 3 efficiently via the solvent with the aid of the ortho ester group.The intramolecular lactonization of photoenols 1E and 3E must be a slow process,presumably because the photoenols are rigid and the hydroxyl group is inhibited,by intramolecular hydrogen bonding,from acquiring the correct geometry for lactonization.Thus only photoenols that are resistant to reformation of their ketone via the solvent are long-lived enough to undergo lactonization and release the alcohol moiety.
机译:氩原子饱和的2-丙醇中3的光解导致分子间H原子抽象并随后内酯化形成5; 2-丙醇中4的辐照产生化合物6和7也来自分子间H原子抽象。在3-丙醇中的3的氧饱和溶液进行光解,生成产物8,9和10,它们都是通过分子内H原子的提取并用氧气捕获相应的双自由基而形成的。在甲醇中进行3的激光快速光解表明形成了分子内H原子抽象作为3的主要光反应性的双自由基3BR(γ_(最大)330 nm,tau = 50 ns)的分解双自由基3BR衰减成光烯醇3Z和3E(γ_(max)390 nm,tau = 6.5 mus和r分别为162μS和162μS。相比之下,激光闪光光解4种得到的光烯醇4Z和4E(γ_(max)390 nm,tau = 15μS和tau = 3.6 ms)。活着,因此它不经历分子内内酯化我们已经观察到类似的光烯醇1E。光烯醇3Z通过1,5-H分子内移位而衰减回3,而光烯醇3E在原酸酯基团的帮助下通过溶剂有效地重整3.光烯醇1E和1E的分子内内酯化3E必须是一个缓慢的过程,大概是因为光致烯醇是刚性的,并且分子内氢键抑制了羟基获得正确的内酯化几何形状。因此,只有能够抵抗酮通过溶剂重整的光致烯醇才很长。足以经受内酯化并释放出醇部分。

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  • 来源
    《The Journal of Organic Chemistry》 |2005年第7期|p.2763-2770|共8页
  • 作者单位

    Department of Chemistry,University of Cincinnati,Ohio 45221-0172,Firmenich Inc.,PO Box 5880,Princeton,New Jersey 08543,and Department of Chemistry,University of Victoria,B.C.,Canada;

    Department of Chemistry,University of Cincinnati,Ohio 45221-0172,Firmenich Inc.,PO Box 5880,Princeton,New Jersey 08543,and Department of Chemistry,University of Victoria,B.C.,Canada;

    Department of Chemistry,University of Cincinnati,Ohio 45221-0172,Firmenich Inc.,PO Box 5880,Princeton,New Jersey 08543,and Department of Chemistry,University of Victoria,B.C.,Canada;

    Department of Chemistry,University of Cincinnati,Ohio 45221-0172,Firmenich Inc.,PO Box 5880,Princeton,New Jersey 08543,and Department of Chemistry,University of Victoria,B.C.,Canada;

    Department of Chemistry,University of Cincinnati,Ohio 45221-0172,Firmenich Inc.,PO Box 5880,Princeton,New Jersey 08543,and Department of Chemistry,University of Victoria,B.C.,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 有机化学;
  • 关键词

  • 入库时间 2022-08-18 00:03:09

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