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弱相互作用激活酯类:通过定制硫族键合调和催化活性与周转矛盾

Weak Interaction Activates Esters: Reconciling Catalytic Activity and Turnover Contradiction by Tailored Chalcogen Bonding.

作者信息

Zhao Ziqiang, Liu Yi, Wang Yao

机构信息

School of Chemistry and Chemical Engineering, Key Laboratory of Colloid and Interface Chemistry of the Ministry of Education, Shandong University, Jinan 250100, P. R. China.

出版信息

J Am Chem Soc. 2024 May 15;146(19):13296-13305. doi: 10.1021/jacs.4c01541. Epub 2024 May 2.

Abstract

The activation of esters by strong Lewis acids via the formation of covalent adducts is a classic strategy to give reactivity; however, this approach frequently incurs limited turnover due to the low efficiency in the dissociation of catalyst from a stable catalyst-product complex. While the use of some weak interaction catalysts that can easily dissociate from any bonding complexes in the reaction system would solve this catalyst turnover problem, the poor catalytic activity in the ester activation that can be provided by these noncovalent forces in turn sets up a formidable challenge. Herein, we describe the activation and catalytic transformation of esters by weak interactions, which provides a promising platform to reconcile the catalytic activity and turnover problems. Several tailored chalcogen-bonding catalysts were developed for the activation of esters, enabling achieving several inherently low reactive Diels-Alder reactions as well as the ring-opening polymerization of lactones through weak chalcogen bonding interactions. This supramolecular catalysis approach is particularly highlighted by its capability to promote some uncommon Diels-Alder reactions involving using dienes bearing electron-withdrawing groups coupled by α,β-unsaturated ester as dienophiles and substrate incorporating competitive Lewis basic sites, in which typical strong Lewis acids showed low catalytic efficiency, while representative hydrogen and halogen bonding catalysts were inactive.

摘要

通过形成共价加合物,利用强路易斯酸活化酯是赋予反应活性的经典策略;然而,由于催化剂从稳定的催化剂 - 产物络合物中解离的效率较低,这种方法常常导致有限的周转次数。虽然使用一些能够在反应体系中轻易从任何键合络合物中解离的弱相互作用催化剂可以解决这种催化剂周转问题,但这些非共价力在酯活化中所能提供的较差催化活性反过来又构成了一项艰巨的挑战。在此,我们描述了通过弱相互作用对酯进行活化和催化转化,这为协调催化活性和周转问题提供了一个有前景的平台。我们开发了几种定制的硫属元素键催化剂用于酯的活化,通过弱硫属元素键相互作用实现了几个固有低反应性的狄尔斯 - 阿尔德反应以及内酯的开环聚合。这种超分子催化方法尤其突出的是其能够促进一些不常见的狄尔斯 - 阿尔德反应,这些反应涉及使用带有吸电子基团的二烯与α,β - 不饱和酯作为亲双烯体偶联,以及含有竞争性路易斯碱性位点的底物,在这些反应中典型的强路易斯酸显示出低催化效率,而代表性的氢键和卤键催化剂则无活性。

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