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初级阴离子-π催化与自催化

Primary Anion-π Catalysis and Autocatalysis.

作者信息

Zhang Xiang, Hao Xiaoyu, Liu Le, Pham Anh-Tuan, López-Andarias Javier, Frontera Antonio, Sakai Naomi, Matile Stefan

机构信息

Department of Organic Chemistry , University of Geneva , Geneva CH 1211 , Switzerland.

Department de Química , Universitat de les Illes Balears , Palma de Mallorca 07122 , Spain.

出版信息

J Am Chem Soc. 2018 Dec 26;140(51):17867-17871. doi: 10.1021/jacs.8b11788. Epub 2018 Dec 13.

Abstract

Epoxide-opening ether cyclizations are shown to occur on π-acidic aromatic surfaces without the need of additional activating groups and with autocatalytic amplification. Increasing activity with the intrinsic π acidity of benzenes, naphthalenediimides (NDIs) and perylenediimides (PDIs) support that anion-π interactions account for function. Rate enhancements maximize at 270 for anion-π catalysis on fullerenes and at 5100 M for autocatalysis. The occurrence of anion-π autocatalysis is confirmed with increasing initial rates in the presence of additional product. Computational studies on autocatalysis reveal transition state and product forming a hydrogen-bonded noncovalent macrocycle, like holding their hands and dancing on the active π surface, with epoxide opening and nucleophile being activated by anion-π interactions and hydrogen bonds to the product, respectively.

摘要

环氧开环醚环化反应表明可在π酸性芳香表面发生,无需额外的活化基团,且具有自催化放大作用。随着苯、萘二亚胺(NDIs)和苝二亚胺(PDIs)固有π酸度的增加,活性增强,这支持了阴离子-π相互作用决定功能的观点。对于富勒烯上的阴离子-π催化,速率增强在270时达到最大值,对于自催化,速率增强在5100 M时达到最大值。在存在额外产物的情况下,初始速率增加证实了阴离子-π自催化的发生。关于自催化的计算研究表明,过渡态和产物形成了一个氢键连接的非共价大环,就像在活性π表面上手拉手跳舞一样,环氧开环和亲核试剂分别通过阴离子-π相互作用和与产物的氢键被活化。

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