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协同对映选择性分子内胺化反应中双轴手性磷酸的手性转移的分子见解。

Molecular insights into chirality transfer from double axially chiral phosphoric acid in a synergistic enantioselective intramolecular amination.

作者信息

Tribedi Soumi, Sunoj Raghavan B

机构信息

Department of Chemistry, Indian Institute of Technology Bombay Powai Mumbai 400076 India

出版信息

Chem Sci. 2021 Dec 29;13(5):1323-1334. doi: 10.1039/d1sc05749a. eCollection 2022 Feb 2.

Abstract

In the most general practice of asymmetric catalysis, a chiral catalyst, typically bearing a center or an axis of chirality, is employed as the chiral source for imparting enantiocontrol over the developing product. Given the current interest toward optically pure compounds, various forms of chiral induction enabled by diverse chiral sources as well as the use of multiple catalysts under one-pot conditions have been in focus. In one such promising development, an achiral -sulfonamide protected 1,6-amino allyl alcohol (NaphSONHCHC(Ph)CHCH[double bond, length as m-dash]CHCHOH) was subjected to Tsuji-Trost activation and an intramolecular amination to form important chiral pyrrolidine frameworks. A dual catalytic system comprising Pd(PPh) and DAPCy (β-cyclohexyl substituted double axially chiral phosphoric acid derived from two homocoupled BINOL backbones with a dynamic central chiral axis) under mild conditions was reported to offer quantitative conversion with an of 95%. Here, we provide molecular insights into the origin of chiral induction by DAPCy, as obtained through a comprehensive density functional theory (SMD/B3LYP-D3/6-31G**,Pd(SDD)) investigation. Two key steps in the mechanism are identified to involve a cooperative mode of activation of the Pd-bound allyl alcohol in the form of a Pd-π-allyl moiety at one end of the substrate, followed by an intramolecular nucleophilic addition of -sulfonamide from the other end to yield a pyrrolidine derivative bearing an α-vinyl stereogenic center. (,,)-DAPCy is found to steer the dehydroxylation to yield a Pd-π-allyl intermediate with a suitably poised prochiral face for the nucleophilic addition. In the enantiocontrolled (as well as the turn-over determining step) nucleophilic addition, the chiral catalyst is identified to serve as a chiral phosphate counterion. The chiral induction is facilitated by a series of N-H⋯O, C-H⋯O, C-H⋯π, lone pair (lp)⋯π, O-H⋯O, O-H⋯π, and π⋯π noncovalent interactions, which is noted as more effective in the lower energy C-N bond formation transition state through the prochiral face of the Pd-π-allyl moiety. These insights into the novel dynamic axially double chiral catalyst could be valuable toward exploiting such modes of stereoinduction.

摘要

在不对称催化的最常规实践中,一种手性催化剂(通常带有一个手性中心或一个手性轴)被用作手性源,以对生成的产物施加对映体控制。鉴于当前对光学纯化合物的关注,由各种手性源实现的各种形式的手性诱导以及在一锅条件下使用多种催化剂一直是研究的焦点。在一个这样有前景的进展中,一种非手性的 - 磺酰胺保护的1,6 - 氨基烯丙醇(NaphSONHCHC(Ph)CHCH[双键,长度为中划线]CHCHOH)经过Tsuji - Trost活化和分子内胺化反应,形成了重要的手性吡咯烷骨架。据报道,在温和条件下,由Pd(PPh)和DAPCy(一种由两个同偶联的联萘酚骨架衍生而来的β - 环己基取代的双轴手性磷酸,具有动态中心手性轴)组成的双催化体系能实现定量转化,对映体过量值为95%。在此,我们通过全面的密度泛函理论(SMD/B3LYP - D3/6 - 31G**,Pd(SDD))研究,提供了关于DAPCy手性诱导起源的分子见解。该反应机理中的两个关键步骤被确定为:第一步,底物一端以Pd - π - 烯丙基部分的形式对与Pd结合的烯丙醇进行协同活化;第二步,另一端的 - 磺酰胺进行分子内亲核加成,生成带有α - 乙烯基立体中心的吡咯烷衍生物。发现(,,)-DAPCy引导脱羟基反应,生成一个具有适当定位的前手性面用于亲核加成的Pd - π - 烯丙基中间体。在对映体控制(以及周转决定步骤)的亲核加成中,手性催化剂被确定为充当手性磷酸抗衡离子。一系列N - H⋯O、C - H⋯O、C - H⋯π、孤对电子(lp)⋯π、O - H⋯O、O - H⋯π和π⋯π非共价相互作用促进了手性诱导,这些相互作用在通过Pd - π - 烯丙基部分的前手性面形成较低能量的C - N键的过渡态中更为有效。这些关于新型动态轴向双手性催化剂的见解对于开发这种立体诱导模式可能具有重要价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/86e1/8809490/6d80199df952/d1sc05749a-s1.jpg

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