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吲哚啉-1-醇衍生物的合成及有氧脱氢。

Synthesis and Aerobic Dehydrogenation of Indolizin-1-ol Derivatives.

机构信息

ASINEX Ltd., 20 Geroev Panfilovtsev St., 125480 Moscow, Russia.

Enikolopov Institute of Synthetic Polymeric Materials, Russian Academy of Sciences, 70 Profsoyuznaya St., 117393 Moscow, Russia.

出版信息

J Org Chem. 2021 Mar 5;86(5):4220-4235. doi: 10.1021/acs.joc.0c03046. Epub 2021 Feb 10.

Abstract

The reaction between simple pyridines, Michael acceptors (cyclopentenone, -methylmaleimide), and monoalkyl-3,3-difluorocyclopropenes affords 3-(1-hydroxyindolizin-3-yl)-succinimides or 3-(1-hydroxyindolizin-3-yl)-cyclopentanones in good yields. These air-sensitive products regenerate double bond in the incorporated Michael acceptors by selective and near-quantitative aerobic dehydrogenation, yielding intensively colored dyes. The purple 3-(1-hydroxyindolizin-3-yl)-maleimides are highly electrophilic and react smoothly with N-, S-, and P-nucleophiles at the maleimide double bond, which is again easily restored by aerobic dehydrogenation. In the particular case of hydrazine and hydroxylamine nucleophiles, their Michael adducts with the 3-(1-hydroxyindolizin-3-yl)-maleimides afford the novel pyrimido[6,1,2-]indolizin-5-one (5-aza[2.3.3]cyclazin-1-one) heterocyclic core by the proposed double-dehydrogenation-6π-electrocyclization-β-elimination reaction sequence. O-Protected 3-(1-hydroxyindolizin-3-yl)-succinimides are air-stable and not electrophilic. Deprotection returns the ability of the succinimides for aerobic dehydrogenation, yielding the appropriate electrophilic maleimides. This property may be employed in design of the switchable covalent-binding tool, activated by chemical or enzymatic cleavage of the O-protective group. Electron-withdrawing group at the C7 position of the indolizine core directly affects the dehydrogenation rate; hence, it can be used for kinetic tuning. Additionally, new stable indolizinium-based zwitterionic 3-oxo-3-indolizin-4-ium-1-olate (1-oxo-1-indolizin-4-ium-3-olate) was accessed by TEMPO oxidation of the C3-free indolizin-1-ol, generated by 3-hydroxypyrrole ring annulation with monoalkylcyclopropenone .

摘要

简单吡啶、迈克尔受体(环戊烯酮、-甲基马来酰亚胺)和单烷基-3,3-二氟环丙烯之间的反应以良好的收率得到 3-(1-羟基吲哚嗪-3-基)-琥珀酰亚胺或 3-(1-羟基吲哚嗪-3-基)-环戊酮。这些对空气敏感的产物通过选择性和近乎定量的需氧脱氢反应重新生成迈克尔受体中并入的双键,生成强烈着色的染料。紫色的 3-(1-羟基吲哚嗪-3-基)-马来酰亚胺具有高亲电性,并且在马来酰亚胺双键处与 N、S 和 P-亲核试剂平稳反应,该双键再次通过需氧脱氢容易恢复。在肼和羟胺亲核试剂的特殊情况下,它们与 3-(1-羟基吲哚嗪-3-基)-马来酰亚胺的迈克尔加成物通过所提出的双脱氢-6π-电环化-β-消除反应序列得到新型嘧啶并[6,1,2-]吲哚嗪-5-酮(5-氮杂[2.3.3]环嗪-1-酮)杂环核。O-保护的 3-(1-羟基吲哚嗪-3-基)-琥珀酰亚胺对空气稳定且没有亲电性。脱保护作用恢复了琥珀酰亚胺进行需氧脱氢的能力,生成适当的亲电马来酰亚胺。该性质可用于设计开关型共价结合工具,通过 O-保护基团的化学或酶裂解来激活。吲哚嗪核的 C7 位置上的吸电子基团直接影响脱氢速率;因此,可用于动力学调谐。此外,通过 TEMPO 氧化 C3 无取代的吲哚醇(由单烷基环丙烯酮与 3-羟吡咯环加成生成)得到了新的稳定的吲哚嗪鎓两性离子 3-氧代-3-吲哚啉-4-翁-1-醇盐(1-氧代-1-吲哚啉-4-翁-3-醇盐)。

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