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Effect of bridgehead substitution in the Grob fragmentation of norbornyl ketones: a new route to substituted halophenols

机译:桥头取代对降冰片基酮的Grob片段的影响:取代卤代酚的新途径

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摘要

Grob fragmentation of suitably designed bicyclic species often generates novel organic skeletons in a facile manner. Herein, we report a comprehensive account of an effective acid-catalyzed Grob fragmentation of trihalonorbornyl ketones to dihalophenol derivatives in good yields. The transformation entails tri-n-butyltin hydride (TBTH) mediated regioselective reduction of one of the two bridgehead halogens of readily available Diels-Alder adducts resulting from l,2,3,4-tetrahalo-5,5-dimethoxycyclopentadiene and vinyl acetate derivatives, followed by its conversion to substituted halophenol species via a three-step hydrolysis-oxidation-rearrangement/aromatization strategy. Both alkyl and aryl substituted norbornyl ketones were studied. A detailed mechanistic analysis employing an isotope labeling experiment revealed plausible mechanistic pathways. Among the two bridgehead substituents, when halogen (X = Cl, Br) stays at C-1 and hydrogen (H, or deuterium, D) at C-4, then product formation takes place via exclusive proto-nation (supplied by an external acid) at β carbon (i.e. C-1) of a dienol moiety formed in situ during the Grob-fragmentation, followed by the removal of acidic 4-H (or 4-D) and halide ion (X~-) from the resulting cyclohexenone intermediate prior to nucleophilic attack on the oxocarbenium ion by X~- and final enolisa-tion of cyclohexadienone species. A sharp deviation was observed with the regioisomeric bicyclic ketone, wherein the 4-X triggers a facile removal of X~- and forms the end products without necessitating the involvement of the C-l substituent (i.e. 1-H/D), thereby retaining it in the final halophenols. It clearly demonstrates how the bridgehead substituents in the two regioisomeric trihalo-norbornyl ketones steer the bicyclic systems to follow entirely different reaction pathways thus suggesting their crucial yet distinct roles in the overall reaction. The present transformation thus manifests the relevance of bridgehead substituents in the Grob fragmentation of such norbornyl systems. Our current strategy also allows one to access orthio-deuterated halophenol compounds.
机译:适当设计的双环物质的团簇破碎常常以容易的方式产生新的有机骨架。本文中,我们报告了三卤代降冰片基酮对二卤代苯酚衍生物的有效酸催化Grob裂解,收率很高。该转化需要三正丁基氢化锡(TBTH)介导的由1,2,3,4-四卤代5,5-二甲氧基环戊二烯和乙酸乙烯酯衍生物产生的现成的Diels-Alder加合物的两个桥头卤素之一的区域选择性还原,然后通过三步水解-氧化-重排/芳构化策略将其转化为取代的卤代酚。研究了烷基和芳基取代的降冰片基酮。使用同位素标记实验的详细机理分析揭示了可能的机理途径。在两个桥头取代基中,当卤素(X = Cl,Br)停留在C-1处,而氢(H或氘,D)停留在C-4处时,则产物通过专有的取代基(由外部在Grob片段化过程中原位形成的二烯醇部分的β碳(即C-1)上的酸),然后从生成的物中除去酸性的4-H(或4-D)和卤离子(X〜-)环己烯酮中间体,然后通过环己二烯酮的X〜-和最终烯醇化亲核攻击氧碳鎓离子。用区域异构体双环酮观察到急剧的偏差,其中4-X触发了X〜-的轻松去除,并形成了最终产物,而无需涉及Cl取代基(即1-H / D),从而将其保留在最后的卤代酚。它清楚地证明了两个区域异构的三卤代-降冰片基酮中的桥头取代基如何引导双环系统遵循完全不同的反应路径,从而表明它们在整个反应中的关键而又不同的作用。因此,本发明的转化表明桥头取代基在这种降冰片基系统的Grob断裂中的相关性。我们当前的策略还允许人们使用硫代氘代卤代酚化合物。

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  • 来源
    《Organic & biomolecular chemistry》 |2015年第37期|9686-9696|共11页
  • 作者单位

    Department of Chemistry, Indian Institute of Technology Kanpur-208016, India;

    Department of Chemistry, Indian Institute of Technology Kanpur-208016, India;

    Department of Chemistry, Indian Institute of Technology Hyderabad, Ordnance Factory Estate, Yeddumailaram-502205, India;

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