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以CoCl为催化剂,通过苄醇与苯胺衍生物的脱氢偶联反应微波辅助合成α-醛亚胺、α-杂环和H 。

Microwave-Assisted Synthesis of -Aldimines, -Heterocycles, and H by Dehydrogenative Coupling of Benzyl Alcohol and Aniline Derivatives Using CoCl as a Catalyst.

作者信息

Pal Adwitiya, Das Krishna Mohan, Thakur Arunabha

机构信息

Department of Chemistry, Jadavpur University, Kolkata 700032, West Bengal, India.

出版信息

J Org Chem. 2023 Jul 7;88(13):8955-8968. doi: 10.1021/acs.joc.3c00682. Epub 2023 Jun 9.

DOI:10.1021/acs.joc.3c00682
PMID:37294694
Abstract

The acceptorless dehydrogenative coupling (ADC) between alcohols and amines to produce imines has been achieved mostly by employing precious-metal-based complexes or complexes of earth-abundant metal ions with sensitive and complicated ligand systems as catalysts mostly under harsh reaction conditions. Methodologies using readily available earth-abundant metal salts as catalysts without the requirement of ligand, oxidant, or any external additives are not explored. We report an unprecedented microwave-assisted CoCl-catalyzed acceptorless dehydrogenative coupling of benzyl alcohol and amine for the synthesis of -aldimines, -heterocycles, and H under mild condition, without any complicated exogenous ligand template, oxidant, or other additives. This environmentally benign methodology exhibits broad substrate scope (43 including 7 new products) with fair functional-group tolerance on the aniline ring. Detection of metal-associated intermediate by gas chromatography (GC) and HRMS, H detection by GC, and kinetic isotope effect reveal the mechanism of this CoClcatalyzed reaction to be ADC. Furthermore, kinetic experiments and Hammett analysis with variation in the nature of substituents over the aniline ring reveal the insight into the reaction mechanism with different substituents.

摘要

醇与胺之间的无受体脱氢偶联反应(ADC)生成亚胺,大多是通过使用基于贵金属的配合物或具有敏感且复杂配体体系的储量丰富的金属离子配合物作为催化剂,且大多是在苛刻的反应条件下实现的。尚未探索使用易于获得的储量丰富的金属盐作为催化剂,而无需配体、氧化剂或任何外部添加剂的方法。我们报道了一种前所未有的微波辅助CoCl催化的苯甲醇与胺的无受体脱氢偶联反应,用于在温和条件下合成α-醛亚胺、杂环和H,无需任何复杂的外源性配体模板、氧化剂或其他添加剂。这种环境友好的方法具有广泛的底物范围(43种,包括7种新产物),对苯胺环上的官能团具有良好的耐受性。通过气相色谱(GC)和高分辨质谱(HRMS)检测与金属相关的中间体,通过GC检测H,以及动力学同位素效应揭示了这种CoCl催化反应的机理为ADC。此外,通过改变苯胺环上取代基的性质进行动力学实验和哈米特分析,揭示了不同取代基反应机理的见解。

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