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首页> 外文期刊>Chemistry: A European journal >Stereoselective Triplet-Sensitised Radical Reactions of Furanone Derivatives
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Stereoselective Triplet-Sensitised Radical Reactions of Furanone Derivatives

机译:呋喃酮衍生物的立体选择性三重态自由基反应

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摘要

The stereo- and regioselectivity of triplet-sensitised radical reactions of furanone derivatives have been investigated. Furanones 7a,b were excited to the (3)pi pi* state by triplet energy transfer from acetone. Intramolecular hydrogen abstraction then occurred such that hydrogen was transferred from the tetrahydropyran to the 13 position of the furanone moiety. Radical combination of the tetrahydropyranyl and the oxoallyl radicals led to the final products 8a,b. In the intramolecular reaction, overall, a pyranyl group adds to the a position of the furanone. The effect of conformation was first investigated with compounds 9a,b carrying an additional substituent on the tether between the furanone and pyranyl moiety. Further information on the effect of conformation and the relative configuration at the pyranyl anomeric centre and the furanone moiety was obtained from the transformations of the glucose derivatives 12, 14, 17 and 18. Radical abstraction occurred at the anomeric centre and at the 5'-position of the glucosyl moiety. Computational studies of the hydrogen-abstraction step were carried out with model structures. The activation barriers of this step for different stereoisomers and the abstraction at the anomeric centre and at the 6'-position of the tetrahydropyranyl moiety were calculated. The results of this investigation are in accordance with experimental observations. Furthermore, they reveal that the reactivity and regioselectivity are mainly determined in the hydrogen-abstraction step. Intramolecular hydrogen abstraction (almost simultaneous electron and proton transfer) in (3)pi pi* excited furanones only takes place under restricted structural conditions in a limited number of conformations that are defined by the relative configuration of the substrates. It is observed that in the biradical intermediate, back-hydrogen transfer occurs leading to the starting compound. In the case of glucose derivatives, this reaction led to epimerisation at the anomeric centre.
机译:已经研究了呋喃酮衍生物的三重态敏化自由基反应的立体和区域选择性。呋喃酮7a,b通过来自丙酮的三重态能量转移被激发到(3)pi pi *状态。然后发生分子内氢提取,使得氢从四氢吡喃转移至呋喃酮部分的13位。四氢吡喃基和氧代烯丙基的自由基结合产生最终产物8a,b。总体上,在分子内反应中,吡喃基基团添加至呋喃酮的α位。首先用在呋喃酮和吡喃基部分之间的系链上带有附加取代基的化合物9a,b研究了构象的作用。从葡萄糖衍生物12、14、17和18的转化获得了在吡喃基端基异构中心和呋喃酮部分上的构象和相对构型的影响的进一步信息。在端基异构中心和5'-上发生了自由基提取。葡萄糖基部分的位置。用模型结构进行了吸氢步骤的计算研究。计算了该步骤对于不同立体异构体的活化势垒,并计算了在四氢吡喃基部分的端基异构体中心和6'-位置的抽象。该研究的结果与实验观察结果一致。此外,他们揭示了反应性和区域选择性主要在吸氢步骤中确定。 (3)pi pi *激发的呋喃酮中的分子内氢提取(几乎同时发生电子和质子转移)仅在受限的结构条件下以有限数量的构象发生,这些构象由底物的相对构型定义。观察到在双自由基中间体中,发生背氢转移,导致起始化合物。在葡萄糖衍生物的情况下,该反应导致在异头中心发生差向异构。

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