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N-质子化手性恶唑硼烷催化重氮酯与醛的不对称插入反应的理论研究:机理与立体选择性

Theoretical Investigations toward the Asymmetric Insertion Reaction of Diazoester with Aldehyde Catalyzed by N-Protonated Chiral Oxazaborolidine: Mechanisms and Stereoselectivity.

作者信息

Wang Yang, Guo Xiaokang, Tang Mingsheng, Wei Donghui

机构信息

The College of Chemistry and Molecular Engineering, Center of Computational Chemistry, Zhengzhou University, Zhengzhou, Henan Province 450001, P. R. China.

出版信息

J Phys Chem A. 2015 Jul 30;119(30):8422-31. doi: 10.1021/acs.jpca.5b04793. Epub 2015 Jul 16.

Abstract

In recent years, the N-protonated chiral oxazaborolidine has been utilized as the Lewis acid catalyst for the asymmetric insertion reaction, which is one of the most challenging topics in current organic chemistry. Nevertheless, the reaction mechanism, stereoselectivity, and regioselectivity of this novel insertion reaction are still unsettled to date. In this present work, the density functional theory (DFT) investigation has been performed to interrogate the mechanisms and stereoselectivities of the formal C-C/H insertion reaction between benzaldehyde and methyl α-benzyl diazoester catalyzed by the N-protonated chiral oxazaborolidine. For the reaction channel to produce the R-configured C-C insertion product as the predominant isomer, the catalytic cycle can be characterized by four steps: (i) the complexation of the aldehyde with catalyst, (ii) addition of the other reactant methyl α-benzyl diazoester, (iii) the removal of nitrogen concerted with the migration of phenyl group or hydrogen, and (iv) the dissociation of catalyst from the products. Our computational results show that the carbon-carbon bond formation step is the stereoselectivity determining step, and the reaction pathways associated with [1, 2]-phenyl group migration occur preferentially to those pathways associated with [1, 2]-hydrogen migration. The pathway leading to the R-configured product is the most favorable pathway among the possible stereoselective pathways. All these calculated outcomes align well with the experimental observations. The novel mechanistic insights should be valuable for understanding this kind of reaction.

摘要

近年来,N-质子化手性恶唑硼烷已被用作不对称插入反应的路易斯酸催化剂,这是当前有机化学中最具挑战性的课题之一。然而,这种新型插入反应的反应机理、立体选择性和区域选择性至今仍未确定。在本工作中,进行了密度泛函理论(DFT)研究,以探究由N-质子化手性恶唑硼烷催化的苯甲醛与α-苄基重氮乙酸甲酯之间的形式C-C/H插入反应的机理和立体选择性。对于生成R构型C-C插入产物作为主要异构体的反应通道,催化循环可分为四个步骤:(i)醛与催化剂的络合;(ii)加入另一种反应物α-苄基重氮乙酸甲酯;(iii)与苯基或氢的迁移协同进行的氮的消除;(iv)催化剂从产物中的解离。我们的计算结果表明,碳-碳键形成步骤是立体选择性决定步骤,与[1,2]-苯基迁移相关的反应途径优先于与[1,2]-氢迁移相关的途径。在可能的立体选择性途径中,生成R构型产物的途径是最有利的途径。所有这些计算结果与实验观察结果吻合良好。这些新颖的机理见解对于理解这类反应应该是有价值的。

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