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首页> 外文期刊>Tetrahedron >Intramolecular cyclization of beta-nitroso-o-quinone methides. A theoretical endoscopy of a potentially useful innate 'reclusive' reaction
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Intramolecular cyclization of beta-nitroso-o-quinone methides. A theoretical endoscopy of a potentially useful innate 'reclusive' reaction

机译:β-亚硝基-邻-醌甲基化物的分子内环化。潜在有用的先天性“隐性”反应的理论内窥镜检查

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摘要

Oxidatively generated beta-nitroso-o-quinone methides undergo an o- and/or peni-intramolecular cyclization to arene-fused 1,2-oxazoles, 1,2-oxazines or indoles. The reaction, found to be an innate process, has been scrutinized by DFT/B3LYP and MP2 calculations. Due to its rapidity, the process has been termed a 'reclusive' one. Competing o-(1,5)- and peri-(1,6)- or (1,5)-cyclizations advance via successive transition states. Activation barriers are drastically lowered in AcOH, probably through H hopping or tunnelling whereas they are barely reduced in other solvents. Aromaticity indices, such as HOMA, I-A and ABO, have been used to assess the stability of the end-heterocycles and the preponderance of any one of them. Thus, the preferred cyclization mode, that is, the prevalence or exclusive formation of one of the heterocycles, appears to be oxidant-directed rather than determined by the quinone methide geometry. The question of the peri-cyclization, being a primary or a secondary process, has been tackled. (C) 2014 Elsevier Ltd. All rights reserved.
机译:氧化生成的β-亚硝基-邻-醌甲基化物经过邻-和/或戊-分子内环化反应生成芳烃稠合的1,2-恶唑,1,2-恶嗪或吲哚。该反应被认为是先天过程,已通过DFT / B3LYP和MP2计算进行了仔细检查。由于其速度很快,该过程被称为“隐性”过程。竞争的o-(1,5)-和peri-(1,6)-或(1,5)环化通过连续的过渡态进行。在AcOH中,活化势垒可能会通过H跳跃或隧穿而大大降低,而在其他溶剂中则几乎没有降低。芳香性指数,例如HOMA,I-A和ABO,已被用于评估末端杂环的稳定性以及其中任何一个的优势。因此,优选的环化模式,即杂环之一的普遍存在或排他性形成,似乎是氧化剂导向的,而不是由醌甲基化物的几何形状决定的。作为主要或次要过程的周环化问题已得到解决。 (C)2014 Elsevier Ltd.保留所有权利。

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