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Photochemistry of six- and five-membered-ring alpha,beta-unsaturated lactones in cryogenic matrices

机译:低温基体中六元环和五元环的α,β-不饱和内酯的光化学

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The photochemistry of representative six and five-membered alpha,beta-unsaturated lactones [alpha-pyrone and some of its derivatives, including coumarin and 3-acetamidocoumarin, 2(SH)-furanone] isolated in cryogenic inert matrices has been investigated by infrared spectroscopy and quantum chemical calculations. In these types of molecules, two main competitive photochemical reaction pathways could be identified: ring opening, leading to formation of the isomeric aldehyde-ketenes, and ring contraction to the corresponding Dewar isomers. For alpha-pyrone and 2(5H)-furanone, the ring-opening process dominates over the ring-contraction reaction, the same occurring for derivatives of these compounds bearing a voluminous substituent at position 3. In 2(5H)-furanone, the ring-opening reaction requires the simultaneous occurrence of a [1,2]-hydrogen atom migration. Nevertheless, it was found to be an easy process upon excitation at lambda > 235 nm. The ring-opening reaction was also found to occur much easily in alpha-pyrone than in coumarin, and factors explaining this observation were discussed. In turn, the Dewar forms of the studied compounds resulting from the ring-contraction photoreaction were found to undergo subsequent photo-elimination of CO2, with formation of the corresponding cycloalkenes. In the matrices, CO2 and the simultaneously formed cycloalkenes were found to exist as associated forms, in which the CO2 molecule is preferentially placed over the cycloalkene ring in a stacked-type geometry. For coumarin, a third photoreaction channel was observed, leading to the formation of benzofurane and CO. This additional reaction channel corresponds to the photoreaction previously observed for the compound in the gaseous phase.
机译:通过红外光谱法研究了代表性的六元和五元α,β-不饱和内酯[α-吡喃酮及其一些衍生物,包括香豆素和3-乙酰氨基豆香油素,2(SH)-呋喃酮]的光化学性质。和量子化学计算。在这些类型的分子中,可以鉴定出两种主要的竞争性光化学反应途径:开环,导致形成异构醛-烯酮,以及环收缩成相应的杜瓦异构体。对于α-吡喃酮和2(5H)-呋喃酮,开环过程在环收缩反应中占主导地位,对于这些化合物的衍生物,它们在位置3处具有大量取代基,在开环过程中也是如此。在2(5H)-呋喃酮中,开环反应需要同时发生[1,2]-氢原子迁移。然而,发现在λ> 235 nm激发时,这是一个简单的过程。还发现α-吡喃酮比香豆素更容易发生开环反应,并讨论了解释该现象的因素。继而,发现由环收缩光反应产生的杜瓦形式的所研究化合物随后经历了对CO 2的光消除,并形成了相应的环烯烃。在基质中,发现CO 2和同时形成的环烯烃以缔合形式存在,其中CO 2分子优先以堆叠式几何形状置于环烯烃环上。对于香豆素,观察到第三光反应通道,导致形成苯并呋喃和CO。该附加反应通道对应于先前在气相中观察到的化合物的光反应。

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