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首页> 外文期刊>Catalysis science & technology >Insights into isothiourea-catalyzed asymmetric [3+3] annulation of alpha,beta-unsaturated aryl esters with 2-acylbenzazoles: mechanism, origin of stereoselectivity and switchable chemoselectivity
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Insights into isothiourea-catalyzed asymmetric [3+3] annulation of alpha,beta-unsaturated aryl esters with 2-acylbenzazoles: mechanism, origin of stereoselectivity and switchable chemoselectivity

机译:洞察isothiourea-catalyzed不对称(3 + 3)环状结构的α,beta-unsaturated芳基酯2-acylbenzazoles:机制,起源立体选择性和可切换的chemoselectivity

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摘要

Recently, isothiourea-catalyzed asymmetric [3 + 3] annulation reactions of alpha,beta-unsaturated aryl esters with 2-acylbenzothiazole (or 2-acylbenzoxazole) were reported with switchable chemoselectivity to form either dihydropyridone or dihydropyranone, but predicting the origin of chemoselectivity and stereoselectivity is still challenging in these kinds of reactions. Herein, density functional theory (DFT) was used to study the general mechanism and explore the origin of stereoselectivity and chemoselectivity in these reactions. The calculated results show that three stages including adsorption, [3 + 3] annulation and dissociation are involved in the reaction, and the C-C bond formation involved in [3 + 3] annulation is a key step that determines both chemoselectivity and stereoselectivity. The origin of stereoselectivity was further investigated by analysis of distortion and non-covalent interactions (NCI), and the C-HMIDLINE HORIZONTAL ELLIPSISO interaction between the chiral substituents of the catalyst and the carbonyl oxygen on 2-acylbenzazoles contributes greatly to the stereoselectivity. In addition, the switchable chemoselectivity associated with the competitive [3 + 3] cyclizations for formation of N- and O-heterocyclic compounds can be predicted by using local nucleophilic Parr function (P-k(-)) and nucleophilic atom energy (E-a(-)) analysis. This work provides guidance for the rational design of potential catalysts for such highly stereoselective reactions with switchable chemoselectivities.
机译:最近,isothiourea-catalyzed不对称(3 + 3)环状结构的反应α,beta-unsaturated芳基酯与2-acylbenzothiazole(或2-acylbenzoxazole)和可切换的报道dihydropyridone chemoselectivity形成或dihydropyranone,但预测的起源chemoselectivity和立体选择性挑战在这些类型的反应。密度泛函理论(DFT)是用于研究一般的机制和探索的起源立体选择性和chemoselectivity在这些反应。阶段包括吸附、(3 + 3)环状结构和离解反应,和所涉及的碳碳键的形成(3 + 3)环状结构是决定一个关键步骤chemoselectivity和立体选择性。立体选择性进一步的起源失真的分析和调查非共价相互作用(NCI),C-HMIDLINE水平ELLIPSISO交互之间的取代基手性催化剂并在2-acylbenzazoles羰基氧大大的提高了立体选择性。此外,chemoselectivity切换与竞争(3 + 3)环化形成N -和O-heterocyclic化合物可以预测的使用本地亲核的帕尔函数(p k (-))和原子亲核能源(a等(-))分析。这项工作提供了理性的指导设计的潜在催化剂等高度立体选择反应与可切换的chemoselectivities。

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