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Preparation of Dibenzo[e,g]isoindol-1-ones via Scholl-Type Oxidative Cyclization Reactions

机译:Scholl型氧化环化反应制备二苯并[e,g]异吲哚-1-酮

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摘要

A flexible synthesis of dibenzo[e,g]isoindol-1- ones has been developed. Dibenzo[e,g]isoindol-1-ones represent simplified benzenoid analogues of biological indolo[2,3-a]- pyrrolo[3,4-c]carbazol-5-ones (indolocarbazoles), compounds that have demonstrated a wide range of biological activity. The synthesis of the title compounds involved tetramic acid sulfonates. Different aryl groups were introduced at C4 of the heterocyclic ring via Suzuki?Miyaura cross-coupling reactions. Finally, mild Scholl-type oxidative cyclizations mediated by phenyliodine(III) bis(trifluoroacetate) (PIFA) converted some of the latter compounds into the corresponding dibenzo[e,g]- isoindol-1-ones. A systematic study of the oxidative cyclization revealed the following reactivity trend: 3,4-dimethoxyphenyl ? 3- methoxyphenyl > 3,4,5-trimethoxyphenyl > 4-methoxyphenyl ≈ phenyl. Overall, the oxidative cyclization required at least two methoxy groups distributed in the aromatic rings, at least one of which had to be located para to the site of the cyclization.
机译:已经开发了二苯并[e,g]异吲哚-1-的灵活合成方法。二苯并[e,g]异吲哚-1-酮代表生物吲哚[2,3-a]-吡咯并[3,4-c]咔唑-5-酮(吲哚并咔唑)的简化苯并类似物,其化合物已被证明具有广泛的应用范围生物活性。标题化合物的合成涉及四甲酸磺酸盐。通过Suzuki?Miyaura交叉偶联反应,在杂环的C4处引入了不同的芳基。最后,由苯基碘(III)双(三氟乙酸盐)(PIFA)介导的温和的Scholl型氧化环化将某些后者化合物转化为相应的二苯并[e,g]-异吲哚-1-酮。对氧化环化的系统研究显示出以下反应趋势:3,4-二甲氧基苯基? 3-甲氧基苯基> 3,4,5-三甲氧基苯基> 4-甲氧基苯基≈苯基。总体而言,氧化环化需要至少两个分布在芳族环中的甲氧基,其中至少一个必须位于与环化部位相对的位置。

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