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低温基质中异恶唑的紫外激光光化学。

UV-laser photochemistry of isoxazole isolated in a low-temperature matrix.

机构信息

Department of Chemistry, University of Coimbra, P-3004-535 Coimbra, Portugal.

出版信息

J Org Chem. 2012 Oct 5;77(19):8723-32. doi: 10.1021/jo301699z. Epub 2012 Sep 21.

Abstract

The photochemistry of matrix-isolated isoxazole, induced by narrowband tunable UV-light, was investigated by infrared spectroscopy, with the aid of MP2/6-311++G(d,p) calculations. The isoxazole photoreaction starts to occur upon irradiation at λ = 240 nm, with the dominant pathway involving decomposition to ketene and hydrogen cyanide. However, upon irradiation at λ = 221 nm, in addition to this decomposition, isoxazole was also found to isomerize into several products: 2-formyl-2H-azirine, 3-formylketenimine, 3-hydroxypropenenitrile, imidoylketene, and 3-oxopropanenitrile. The structural and spectroscopic assignment of the different photoisomerization products was achieved by additional irradiation of the λ = 221 nm photolyzed matrix, using UV-light with λ ≥ 240 nm: (i) irradiation in the 330 ≤ λ ≤ 340 nm range induced direct transformation of 2-formyl-2H-azirine into 3-formylketenimine; (ii) irradiation with 310 ≤ λ ≤ 318 nm light induced the hitherto unobserved transformation of 3-formylketenimine into 3-hydroxypropenenitrile and imidoylketene; (iii) irradiation with λ = 280 nm light permits direct identification of 3-oxopropanenitrile; (iv) under λ = 240 nm irradiation, tautomerization of 3-hydroxypropenenitrile to 3-oxopropanenitrile is observed. On the basis of these findings, a detailed mechanistic proposal for isoxazole photochemistry is presented.

摘要

采用红外光谱法,并借助 MP2/6-311++G(d,p)计算,研究了窄带可调紫外光诱导的基质隔离异恶唑的光化学反应。当照射波长为 λ = 240nm 时,异恶唑光反应开始发生,主要途径是分解为酮烯和氢氰酸。然而,当照射波长为 λ = 221nm 时,除了这种分解之外,还发现异恶唑异构化为几种产物:2-甲酰基-2H-氮丙啶、3-甲酰基亚胺、3-羟基丙烯腈、酰基异氰酸酯和 3-氧代丙腈。通过用 λ≥240nm 的紫外光照射 λ = 221nm 光解基质,实现了不同光异构化产物的结构和光谱分配:(i)在 330≤λ≤340nm 范围内的照射直接将 2-甲酰基-2H-氮丙啶转化为 3-甲酰基亚胺;(ii)用 310≤λ≤318nm 的光照射引起了前所未有的 3-甲酰基亚胺转化为 3-羟基丙烯腈和酰基异氰酸酯的反应;(iii)用 λ=280nm 的光照射可以直接鉴定 3-氧代丙腈;(iv)在 λ=240nm 照射下,观察到 3-羟基丙烯腈向 3-氧代丙腈的互变异构化。基于这些发现,提出了详细的异恶唑光化学机理建议。

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