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计算指导的 I 型动态动力学不对称帕松-克恩反应中烯丙基乙酸酯的催化剂设计。

Computationally Guided Catalyst Design in the Type I Dynamic Kinetic Asymmetric Pauson-Khand Reaction of Allenyl Acetates.

机构信息

Department of Chemistry, University of Pittsburgh , Pittsburgh, Pennsylvania 15260, United States.

出版信息

J Am Chem Soc. 2017 Oct 25;139(42):15022-15032. doi: 10.1021/jacs.7b07121. Epub 2017 Oct 12.

Abstract

The Rh(I)-catalyzed allenic Pauson-Khand reaction (APKR) is an efficient, redox-neutral method of synthesizing α-acyloxy cyclopentenones. An enantioselective APKR could provide access to chiral, nonracemic α-acyloxy and α-hydroxy cyclopentenones and their corresponding redox derivatives, such as thapsigargin, a cytotoxic natural product with potent antitumor activity. Rapid scrambling of axial chirality of allenyl acetates in the presence of Rh(I) catalysts enables the conversion of racemic allene to enantiopure cyclopentenone product in a dynamic kinetic asymmetric transformation (DyKAT). A combined experimental and computational approach was taken to develop an effective catalytic system to achieve the asymmetric transformation. The optimization of the denticity, and steric and electronic properties of the ancillary ligand (initially (S)-MonoPhos, 58:42 er), afforded a hemilabile bidentate (S)-MonoPhos-alkene-Rh(I) catalyst that provided α-acyloxy cyclopentenone product in up to 14:86 er. Enantioselectivity of the Rh(I)-(S)-MonoPhos-alkene catalyst was rationalized using ligand-substrate steric interactions and distortion energies in the computed transition states. This asymmetric APKR of allenyl acetates is a rare example of a Type I DyKAT reaction of an allene, the first example of DyKAT in a cyclocarbonylation reaction, and the first catalyst-controlled enantioselective APKR.

摘要

Rh(I)催化的烯丙基 Pauson-Khand 反应 (APKR) 是一种高效、氧化还原中性的合成 α-酰氧基环戊烯酮的方法。对映选择性的 APKR 可以提供手性的、非外消旋的 α-酰氧基和 α-羟基环戊烯酮及其相应的氧化还原衍生物,如 thapsigargin,一种具有强大抗肿瘤活性的细胞毒性天然产物。在 Rh(I)催化剂存在下,烯丙基乙酸酯的轴向手性快速重排使外消旋的丙二烯转化为手性纯的环戊烯酮产物,这是一种动态动力学不对称转化 (DyKAT)。采用实验和计算相结合的方法开发了一种有效的催化体系,以实现不对称转化。通过优化辅助配体的齿密度、空间和电子性质(最初为 (S)-MonoPhos,ee 值为 58:42),得到了一种半螯合双齿 (S)-MonoPhos-烯烃-Rh(I)催化剂,该催化剂可提供高达 14:86ee 值的 α-酰氧基环戊烯酮产物。使用配体-底物的空间相互作用和计算过渡态中的扭曲能,对 Rh(I)-(S)-MonoPhos-烯烃催化剂的对映选择性进行了合理化。这种烯丙基乙酸酯的不对称 APKR 是烯丙基的 I 型 DyKAT 反应的罕见实例,是在环羰化反应中首次出现的 DyKAT,也是首例催化剂控制的对映选择性 APKR。

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