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带有两个芳基取代基的季碳的催化不对称合成。通过催化不对称分子内Heck反应对3-烷基-3-芳基氧化吲哚进行对映选择性合成。

Catalytic asymmetric synthesis of quaternary carbons bearing two aryl substituents. Enantioselective synthesis of 3-alkyl-3-aryl oxindoles by catalytic asymmetric intramolecular heck reactions.

作者信息

Dounay Amy B, Hatanaka Keiko, Kodanko Jeremy J, Oestreich Martin, Overman Larry E, Pfeifer Lance A, Weiss Matthew M

机构信息

Department of Chemistry, 516 Rowland Hall, University of California, Irvine 92697-2025, USA.

出版信息

J Am Chem Soc. 2003 May 21;125(20):6261-71. doi: 10.1021/ja034525d.

Abstract

A practical sequence involving three consecutive palladium(0)-catalyzed reactions has been developed for synthesizing 3-alkyl-3-aryloxindoles in high enantiopurity. The Heck cyclization precursors 10 and 11a-k are generated in one step by chemoselective Stille cross-coupling of 2'-triflato-(Z)-2-stannyl-2-butenanilide 9 with aryl or heteroaryl iodides. The pivotal catalytic asymmetric Heck cyclization step of this sequence takes place in high yield and with high enantioselectivity (71-98% ee) with the Pd-BINAP catalyst derived from Pd(OAc)(2) to construct oxindoles containing a diaryl-substituted all-carbon quaternary carbon center. A wide variety of aryl and heteroaryl substituents, including ones of considerable steric bulk, can be introduced at C3 of oxindoles in this way (Table 4). The only limitations encountered to date are aryl substituents containing ortho nitro or basic amine functionalities and the bulky N-alkyl-7-oxindolyl group. Asymmetric Heck cyclization of butenalide 22 having an o-(N-acetyl-N-benzylamino)phenyl substituent at C2 provided a approximately 1:1 mixture of amide atropisomers 23 and 24 in high yield and high enantioselectivity. These atropisomers are formed directly upon Heck cyclization of 22 at 80 degrees C, as they interconvert thermally to only a small extent at this temperature.

摘要

已开发出一种涉及三个连续钯(0)催化反应的实用序列,用于以高对映体纯度合成3-烷基-3-芳基氧化吲哚。通过2'-三氟甲磺酸酯基-(Z)-2-锡基-2-丁烯酰苯胺9与芳基或杂芳基碘化物的化学选择性施蒂勒交叉偶联一步生成Heck环化前体10和11a-k。该序列的关键催化不对称Heck环化步骤以高产率和高对映选择性(ee值为71-98%)发生,使用由Pd(OAc)₂衍生的Pd-BINAP催化剂构建含有二芳基取代的全碳季碳中心的氧化吲哚。通过这种方式,可以在氧化吲哚的C3位引入各种各样的芳基和杂芳基取代基,包括一些空间位阻较大的取代基(表4)。迄今为止遇到的唯一限制是含有邻硝基或碱性胺官能团的芳基取代基以及庞大的N-烷基-7-氧化吲哚基。在C2位具有邻-(N-乙酰基-N-苄基氨基)苯基取代基的丁烯内酰胺22的不对称Heck环化以高产率和高对映选择性提供了酰胺阻转异构体23和24的大约1:1混合物。这些阻转异构体在80℃下22进行Heck环化时直接形成,因为它们在该温度下仅在很小程度上发生热相互转化。

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