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镍(0)催化的苯并氧硅杂环戊二烯的对映选择性和非对映选择性合成:通过配体控制从分子间芳基转移过程到分子内芳基转移过程的转变。

Nickel(0)-Catalyzed Enantio- and Diastereoselective Synthesis of Benzoxasiloles: Ligand-Controlled Switching from Inter- to Intramolecular Aryl-Transfer Process.

机构信息

Advanced Catalytic Transformation Program for Carbon Utilization (ACT-C), Japan Science and Technology Agency (JST) , Suita, Osaka 565-0871, Japan.

出版信息

J Am Chem Soc. 2015 Sep 16;137(36):11838-45. doi: 10.1021/jacs.5b07827. Epub 2015 Sep 3.

DOI:10.1021/jacs.5b07827
PMID:26301429
Abstract

A highly enantioselective synthesis of 3-aryl-, vinyl-, and alkynyl-2,1-benzoxasiloles (up to 99.9% ee and 99% yield) was achieved via the sequential activation of an aldehyde and a silane by nickel(0). This strategy was applied to a simultaneous generation of carbon- and silicon-stereogenic centers with excellent selectivity (dr = 99:1) via diastereotopic aryl transfer. Initial mechanistic studies revealed the complete switching of an aryl-transfer process from an intermolecular (racemic synthesis in the presence of IPr) to an intramolecular (enantioselective synthesis using chiral NHC, L5) fashion. A plausible rationale for the switching of the aryl-transfer process is given by a preliminary DFT calculation, which suggests that the coordination of 1 to the nickel(0)/L5 fragment in an η(2)-arene:η(2)-aldehyde fashion would be a key to the intramolecular process, while the formation of the corresponding intermediate is not possible in the presence of IPr. Owing to the chemically labile nature of its C-Si and O-Si bonds, enantioenriched benzoxasiloles are utilized for the synthesis of chiral building blocks and antihistaminic and anticholinergic drug molecules such as (R)-orphenadrine and (S)-neobenodine with no erosion of the enantiomeric excess.

摘要

通过镍(0)对醛和硅烷的顺序活化,实现了高对映选择性合成 3-芳基、乙烯基和炔基-2,1-苯并氧杂硅烷(高达 99.9%ee 和 99%收率)。该策略通过非对映选择性芳基转移应用于同时生成碳和硅手性中心,具有优异的选择性(dr = 99:1)。初步的机理研究表明,芳基转移过程从分子间(在 IPr 存在下的外消旋合成)完全转变为分子内(使用手性 NHC、L5 的对映选择性合成)方式。初步的 DFT 计算为芳基转移过程的转变提供了一个合理的解释,该计算表明,1 与镍(0)/L5 片段以η(2)-芳烃:η(2)-醛的方式配位将是分子内过程的关键,而在 IPr 存在下不可能形成相应的中间体。由于其 C-Si 和 O-Si 键的化学不稳定性,对映体富集的苯并氧杂硅烷可用于合成手性砌块以及抗组胺药和抗胆碱能药物分子,如(R)-orphenadrine 和(S)-neobenodine,而对映体过量没有损失。

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