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远程电子手性 N-杂环卡宾调谐。

Remote Electronic Tuning of Chiral N-Heterocyclic Carbenes.

机构信息

Graduate School of Pharmaceutical Sciences, Tokushima University, Shomachi, Tokushima 770-8505, Japan.

Research Cluster on "Key Material Development", Tokushima University, Shomachi, Tokushima 770-8505, Japan.

出版信息

Chem Rec. 2023 Jul;23(7):e202300103. doi: 10.1002/tcr.202300103. Epub 2023 May 31.

DOI:10.1002/tcr.202300103
PMID:37255345
Abstract

Our recent efforts to develop novel N-Heterocyclic carbene (NHC)-catalyzed asymmetric reactions are described. During our investigation for development of the acylation reactions via acylazoliums generated by the reactions of NHCs and α-oxidized aldehydes, we have observed significant effects of substitution at a remote site of the carbene carbon of NHCs. In addition, we also observed a significant enhancement of the enantioselectivity by the addition of carboxylate anions. From this observation, we proposed a novel working hypothesis involving a formation of a complex of the substrate and additive to reinforce the recognition of the catalyst for enhancement of the catalytic performance of the asymmetric N-heterocyclic carbene system. By applying this concept, we achieved the kinetic resolutions of both cyclic and acyclic alcohols in excellent enantioselectivities. The effects of the remote substitution were also observed in intramolecular Stetter reaction and intermolecular benzoin reaction. In these reactions, the comparison of the catalytic performance of the NHCs bearing variable remote substitutions provided insights into the reaction mechanism because the remote substitution tuned the electronic nature of NHCs without affecting the steric and electrostatic factors around the reaction site. We also developed an intramolecular benzoin condensation involving two aldehydes, which is challenging to realize. Using the substrates bearing proper protecting groups, we succeeded in the stereo divergent synthesis of a variety of inososes, which are important intermediates for the synthesis of biologically active cyclitols.

摘要

我们最近致力于开发新型 N-杂环卡宾(NHC)催化的不对称反应。在研究通过 NHC 与α-氧化醛反应生成的酰基唑鎓进行酰化反应的过程中,我们观察到 NHC 中碳上的取代基对反应的显著影响。此外,我们还观察到添加羧酸根阴离子可以显著提高对映选择性。基于这一观察结果,我们提出了一个新的工作假说,涉及底物和添加剂的复合物的形成,以增强对催化剂的识别,从而提高不对称 N-杂环卡宾体系的催化性能。通过应用这一概念,我们实现了环状和非环状醇的动力学拆分,对映选择性优异。远程取代的影响也在分子内 Stetter 反应和分子间苯偶姻反应中观察到。在这些反应中,具有可变远程取代基的 NHC 的催化性能的比较提供了对反应机制的深入了解,因为远程取代基可以调整 NHC 的电子性质,而不会影响反应位点周围的空间和静电因素。我们还开发了一种涉及两个醛的分子内苯偶姻缩合反应,这是具有挑战性的。使用带有适当保护基的底物,我们成功地实现了多种肌醇的立体发散合成,肌醇是生物活性环糖醇合成的重要中间体。

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