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酸催化环缩合生成呋喃并色原烷的可逆性和反应活性——一种处于“鎓盐-普林斯”“-醌甲基化物环加成”机理节点的反应

Reversibility and reactivity in an acid catalyzed cyclocondensation to give furanochromanes - a reaction at the 'oxonium-Prins' '-quinone methide cycloaddition' mechanistic nexus.

作者信息

Nielsen Christian D-T, Mooij Wouter J, Sale David, Rzepa Henry S, Burés Jordi, Spivey Alan C

机构信息

Department of Chemistry , Imperial College London , Exhibition Road , London , SW7 2AZ , UK . Email:

Process Studies Group , Syngenta , Jealott's Hill , Bracknell , Berkshire RG42 6EY , UK.

出版信息

Chem Sci. 2018 Oct 19;10(2):406-412. doi: 10.1039/c8sc04302g. eCollection 2019 Jan 14.

Abstract

Herein we report a combined experimental and computational investigation of the acid catalyzed cyclocondensation reaction between styrenyl homoallylic alcohols and salicylaldehyde to form furanochromanes. We disclose a previously unreported isomerisation of the 'unnatural' -fused products to the diastereomeric 'natural' -fused congeners. Notwithstanding the appeal of assuming this corresponds to to isomerisation of Diels-Alder (D-A) adducts concerted retro-cycloaddition/cycloaddition reactions of an generated -quinone methide with the styrenyl alkene, our combined Hammett/DFT study reveals a stepwise Prins-like process discrete benzylic carbocation intermediates for all but the most electron deficient styrenes. As these reactions fortuitously lie at the intersection of these two mechanistic manifolds, it allows us to propose an experimentally determined indicative value of -3 as marking this nexus between a stepwise Prins-type pathway and a concerted cycloaddition reaction. This value should prove useful for categorising other reactions formally involving '-quinomethides', without the need for the extensive computation performed here. Logical optimisation of the reaction based upon the mechanistic insight led to the use of HFIP as an additive which enables exclusive formation of 'natural' -fused products with a ∼100-fold reaction rate increase and improved scope.

摘要

在此,我们报告了一项关于苯乙烯基高烯丙醇与水杨醛之间酸催化环缩合反应生成呋喃并色原烷的实验与计算相结合的研究。我们揭示了一种此前未报道的“非天然”稠合产物向非对映异构体“天然”稠合类似物的异构化。尽管认为这对应于狄尔斯-阿尔德(D-A)加合物的[2,3]迁移异构化,即由生成的邻醌甲基化物与苯乙烯基烯烃进行协同的逆环加成/环加成反应,但我们结合哈米特/密度泛函理论(DFT)的研究表明,除了电子最缺乏的苯乙烯外,对于所有情况都存在一个逐步的普林斯型过程,涉及离散的苄基碳正离子中间体。由于这些反应恰好处于这两种机理路径的交叉点,这使我们能够提出一个通过实验确定的指示性哈米特 ρ 值为 -3,以标记逐步的普林斯型途径与协同环加成反应之间的这个连接点。该值对于对其他形式上涉及“邻醌甲基化物”的反应进行分类应是有用的,而无需在此进行广泛的计算。基于机理洞察对反应进行合理优化,导致使用六氟异丙醇(HFIP)作为添加剂,它能够以约100倍的反应速率增加并扩大反应范围,独家形成“天然”稠合产物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ac0/6334628/3c4c50adea9f/c8sc04302g-s1.jpg

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