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手性 Pd 催化的各种 N-C 轴手性化合物的对映选择性合成及其合成应用。

Chiral Pd-Catalyzed Enantioselective Syntheses of Various N-C Axially Chiral Compounds and Their Synthetic Applications.

机构信息

Department of Applied Chemistry (Japanese Association of Bio-intelligence for Well-being), Shibaura Institute of Technology, 3-7-5 Toyosu, Koto-ku, Tokyo 135-8548, Japan.

出版信息

Acc Chem Res. 2021 Feb 2;54(3):719-730. doi: 10.1021/acs.accounts.0c00767. Epub 2021 Jan 22.

Abstract

Biaryl atropisomers are key structural components in chiral ligands, chiral functional materials, natural products, and bioactive compounds, and their asymmetric syntheses have been reported by many groups. In contrast, although the scientific community has long been aware of atropisomers due to rotational restriction around N-C bonds, they have attracted scant attention and have remained an unexplored research area. In particular, their catalytic asymmetric synthesis and the synthetic applications were unknown until recently. This Account describes studies conducted by our group on the catalytic enantioselective syntheses of N-C axially chiral compounds and their applications in asymmetric reactions.In the presence of a chiral Pd catalyst, the reactions of achiral secondary -butylanilides with 4-iodonitrobenzene proceeded in a highly enantioselective manner (up to 96% ee), affording N-C axially chiral -arylated -butylanilides in good yields. The application of the present chiral Pd-catalyzed -arylation reaction to an intramolecular version gave N-C axially chiral lactams with high optical purity (up to 98% ee). These reactions were the first highly enantioselective syntheses of N-C axially chiral compounds with a chiral catalyst. Since the publication of these reactions, N-C axially chiral compounds have been widely accepted as new target molecules for catalytic asymmetric reactions. Furthermore, chiral-Pd-catalyzed intramolecular -arylations were applied to the enantioselective syntheses of N-C axially chiral quinoline-4-one and phenanthridin-6-one derivatives. We also succeeded in the enantioselective syntheses of various N-C axially chiral compounds using other chiral Pd-catalyzed reactions. That is, optically active N-C axially chiral -(2--butylphenyl)indoles, 3-(2-bromophenyl)quinazolin-4-ones, and -(2--butylphenyl)sulfonamides were obtained through chiral Pd-catalyzed 5--hydroaminocyclization, monohydrodebromination (reductive asymmetric desymmetrization), and Tsuji-Trost -allylation, respectively. The study of the catalytic asymmetric synthesis of axially chiral indoles has contributed to the development of not only N-C axially chiral chemistry but also the chemistry of axially chiral indoles. Subsequently, the catalytic asymmetric syntheses of various indole derivatives bearing a C-C chiral axis as well as an N-C chiral axis have been reported by many groups. Moreover, axially chiral quinazlolin-4-one derivatives, which were obtained through chiral Pd-catalyzed asymmetric desymmetrization, are pharmaceutically attractive compounds; for example, 2-methyl-3-(2-bromophenyl)quinazolin-4-one product is a mebroqualone possessing GABA agonist activity.Most of the N-C axially chiral products have satisfactory rotational stability for synthetic applications, and their synthetic utility was also demonstrated through application to chiral enolate chemistry. That is, the reaction of various alkyl halides with the enolate prepared from the optically active anilide, lactam, and quinazolinone products proceeded with high diastereoselectivity by asymmetric induction due to the N-C axial chirality.At the present time, N-C axially chiral chemistry has become a popular research area, especially in synthetic organic chemistry, and original papers on the catalytic asymmetric syntheses of various N-C axially chiral compounds and their synthetic applications have been published.

摘要

联芳轴手性异构体是手性配体、手性功能材料、天然产物和生物活性化合物中的关键结构单元,许多小组已经报道了它们的不对称合成。相比之下,尽管科学界由于 N-C 键的旋转限制很早就意识到了轴手性异构体,但它们很少受到关注,仍然是一个未被探索的研究领域。特别是,直到最近,它们的催化不对称合成和合成应用才为人所知。本账户描述了我们小组在 N-C 轴手性化合物的催化对映选择性合成及其在手性反应中的应用方面的研究。

在手性 Pd 催化剂的存在下,手性二级仲丁基苯胺与 4-碘硝基苯反应以高度对映选择性(高达 96%ee)进行,以良好的收率得到 N-C 轴手性 -芳基化的 -仲丁基苯胺。本研究中的手性 Pd 催化 -芳基化反应的应用于分子内版本得到了具有高光学纯度(高达 98%ee)的 N-C 轴手性内酰胺。这些反应是使用手性催化剂对 N-C 轴手性化合物进行的首次高度对映选择性合成。自这些反应发表以来,N-C 轴手性化合物已被广泛认为是催化不对称反应的新靶分子。此外,手性 Pd 催化的分子内 -芳基化被应用于 N-C 轴手性喹啉-4-酮和菲啶-6-酮衍生物的对映选择性合成。我们还成功地使用其他手性 Pd 催化反应对各种 N-C 轴手性化合物进行了对映选择性合成。也就是说,通过手性 Pd 催化的 5--羟氨基环化、单氢脱溴(还原不对称去对称化)和 Tsuji-Trost -烯丙基化反应,分别获得了光学活性的 N-C 轴手性 -(2--丁基苯基)吲哚、3-(2-溴苯基)喹唑啉-4-酮和 -(2--丁基苯基)磺酰胺。对轴手性吲哚的催化不对称合成的研究不仅促进了 N-C 轴手性化学的发展,也促进了轴手性吲哚化学的发展。随后,许多小组报道了各种带有 C-C 手性轴和 N-C 手性轴的吲哚衍生物的催化不对称合成。此外,通过手性 Pd 催化的不对称去对称化得到的轴手性喹唑啉-4-酮衍生物是具有吸引力的药物化合物;例如,2-甲基-3-(2-溴苯基)喹唑啉-4-酮产物是具有 GABA 激动活性的美布酮。

大多数 N-C 轴手性产物在手性合成应用中具有令人满意的旋转稳定性,并且通过应用于手性烯醇化物化学也证明了它们的合成实用性。也就是说,各种烷基卤化物与由光学活性苯胺、内酰胺和喹唑啉酮产物制备的烯醇化物的反应通过不对称诱导以高非对映选择性进行,这是由于 N-C 轴向手性。

目前,N-C 轴手性化学已成为一个热门的研究领域,特别是在合成有机化学领域,已经发表了关于各种 N-C 轴手性化合物的催化不对称合成及其合成应用的原始论文。

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