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稀土催化芳醛亚胺与苯乙烯的[3+2]环化反应的理论研究:非对映选择性的机理与起源

Theoretical Studies of Rare-Earth-Catalyzed [3 + 2] Annulation of Aromatic Aldimine with Styrene: Mechanism and Origin of Diastereoselectivity.

作者信息

Wang Pan, Luo Gen, Yang Jimin, Cong Xuefeng, Hou Zhaomin, Luo Yi

机构信息

State Key Laboratory of Fine Chemicals, School of Chemical Engineering, Dalian University of Technology, Dalian 116024, China.

Institutes of Physical Science and Information Technology, Anhui University, Hefei 230601, China.

出版信息

J Org Chem. 2021 Mar 5;86(5):4236-4244. doi: 10.1021/acs.joc.0c03060. Epub 2021 Feb 22.

Abstract

The synthesis of multisubstituted 1-aminoindanes through catalyst-controlled diastereodivergent [3 + 2] annulation of aromatic imines with alkenes is of great interest and importance. An understanding of the exact reaction mechanism, especially for the origin of diastereoselectivity, is an essential aspect for further development of such reactions. In this study, density functional theory calculations have been carried out on the rare-earth-catalyzed diastereodivergent [3 + 2] annulation of benzaldimine with styrene. The results show that the reaction mainly involves generation of active species, olefin insertion, cyclization, and protonation steps. The noncovalent interactions, such as C-H···π and metal···π interactions, play an important role in stabilizing the key transition state or intermediate. Both steric and electronic factors account for the diastereoselectivity. The preferred -diastereoselectivity could be ascribed to more efficient orbital interaction, while the crowded space will induce the formation of a C-H···π interaction between the NBu group and benzene ring in a -diastereoselectivity manner, thus stabilizing the -selective transition state. Therefore, the stereospecific product could be obtained by fine-tuning the ligand/metal combination of the catalysts.

摘要

通过芳族亚胺与烯烃的催化剂控制的非对映发散性[3 + 2]环化反应合成多取代的1-氨基茚满具有极大的研究意义和重要性。理解确切的反应机理,尤其是非对映选择性的起源,是进一步发展此类反应的一个重要方面。在本研究中,对稀土催化的苯甲醛亚胺与苯乙烯的非对映发散性[3 + 2]环化反应进行了密度泛函理论计算。结果表明,该反应主要涉及活性物种的生成、烯烃插入、环化和质子化步骤。非共价相互作用,如C-H···π和金属···π相互作用,在稳定关键过渡态或中间体方面起着重要作用。空间和电子因素都对非对映选择性有影响。优先的 -非对映选择性可归因于更有效的轨道相互作用,而拥挤的空间会以 -非对映选择性方式诱导NBu基团与苯环之间形成C-H···π相互作用,从而稳定 -选择性过渡态。因此,通过微调催化剂的配体/金属组合可以获得立体专一性产物。

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