Department of Chemistry, Zhejiang University, Hangzhou 310027, China.
J Am Chem Soc. 2020 Oct 21;142(42):18266-18276. doi: 10.1021/jacs.0c09400. Epub 2020 Oct 8.
Atropisomeric anilides have received tremendous attention as a novel class of chiral compounds possessing restricted rotation around an N-aryl chiral axis. However, in sharp contrast to the well-studied synthesis of biaryl atropisomers, the catalytic asymmetric synthesis of chiral anilides remains a daunting challenge, largely due to the higher degree of rotational freedom compared to their biaryl counterparts. Here we describe a highly efficient catalytic asymmetric synthesis of atropisomeric anilides via Pd(II)-catalyzed atroposelective C-H olefination using readily available Lpyroglutamic acid as a chiral ligand. A broad range of atropisomeric anilides were prepared in high yields (up to 99% yield) and excellent stereoinduction (up to >99% ee) under mild conditions. Experimental studies indicated that the atropostability of those anilide atropisomers toward racemization relies on both steric and electronic effects. Experimental and computational studies were conducted to elucidate the reaction mechanism and rate-determining step. DFT calculations revealed that the amino acid ligand distortion is responsible for the enantioselectivity in the C-H bond activation step. The potent applications of the anilide atropisomers as a new type of chiral ligand in Rh(III)-catalyzed asymmetric conjugate addition and Lewis base catalysts in enantioselective allylation of aldehydes have been demonstrated. This strategy could provide a straightforward route to access atropisomeric anilides, one of the most challenging types of axially chiral compounds.
手性酰胺作为一类具有受限 N-芳基手性轴旋转的新型手性化合物,受到了极大的关注。然而,与研究充分的联芳基轴手性化合物的合成相比,手性酰胺的催化不对称合成仍然是一个艰巨的挑战,这主要是由于其与联芳基相比具有更高的旋转自由度。在这里,我们描述了一种通过 Pd(II)催化的手性酰胺的对映选择性 C-H 烯烃化反应,使用易得的 L-焦谷氨酸作为手性配体,高效地合成轴手性酰胺。在温和的条件下,广泛的轴手性酰胺以高收率(高达 99%的产率)和优异的立体诱导(高达>99%的对映体过量)得到制备。实验研究表明,这些酰胺轴手性化合物对消旋化的轴手性稳定性取决于空间和电子效应。进行了实验和计算研究以阐明反应机制和速率决定步骤。DFT 计算表明,氨基酸配体的扭曲是 C-H 键活化步骤对映选择性的原因。酰胺轴手性化合物作为 Rh(III)催化不对称共轭加成和路易斯碱催化剂在手性醛的对映选择性烯丙基化中的新型手性配体的潜在应用已经得到了证明。该策略为获得轴手性酰胺提供了一种直接途径,轴手性酰胺是最具挑战性的轴向手性化合物之一。