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碘催化以CS作为羰基化试剂的2-烯基/吡咯基苯胺的[5 + 1]羰基化反应

Iodine-Catalyzed [5 + 1] Carbonylation of 2-Alkenyl/Pyrrolylanilines with CS as the Carbonylating Reagent.

作者信息

Huang Zhilong, Li Jin, Nan Haocheng, Yang Weiran, Zheng Jing

机构信息

College of Chemistry and Chemical Engineering, Nanchang University, 999 XuFu Road, Nangchang 330031, China.

出版信息

J Org Chem. 2024 Aug 2;89(15):10434-10439. doi: 10.1021/acs.joc.4c00316. Epub 2024 Jul 23.

Abstract

Novel metal-free iodine (I)-catalyzed [5 + 1] carbonylation of 2-alkenyl/pyrrolylanilines with carbon disulfide (CS) as the carbonylating reagent has been developed. This innovative method allows for the synthesis of valuable derivatives such as 4-aryl-2-quinolinones and pyrrolyl-fused quinoxalinones. Notably, this work represents the first instance where CS has been utilized as a carbonylating reagent source. The protocol demonstrates the utilization of various substrates, leading to diverse reactions that afford excellent yields under mild conditions. The method also shows good compatibility with functional groups present in the substrates, further enhancing its synthetic utility. Importantly, the developed reaction exhibits scalability, enabling gram-scale synthesis, and shows promise for the synthesis of druglike molecules. In this catalytic system, CS serves as the carbonyl source, while dimethyl sulfoxide plays multiple roles, including acting as an oxidant and a solvent. Mechanistic studies have been conducted to elucidate the underlying processes, with the formation of quinolone-2-thiones identified as crucial intermediates, facilitating the carbonylation annulation process.

摘要

已开发出一种新型无金属碘(I)催化的[5 + 1]羰基化反应,该反应以二硫化碳(CS)作为羰基化试剂,用于2-烯基/吡咯基苯胺的反应。这种创新方法能够合成有价值的衍生物,如4-芳基-2-喹啉酮和吡咯并稠合喹喔啉酮。值得注意的是,这项工作代表了首次将CS用作羰基化试剂源的实例。该方案展示了各种底物的利用情况,在温和条件下可导致多种反应并获得优异的产率。该方法还显示出与底物中存在的官能团具有良好的兼容性,进一步提高了其合成实用性。重要的是,所开发的反应具有可扩展性,能够进行克级规模的合成,并且在合成类药物分子方面显示出前景。在这个催化体系中,CS作为羰基源,而二甲基亚砜发挥多种作用,包括作为氧化剂和溶剂。已进行机理研究以阐明潜在过程,已确定喹啉-2-硫酮的形成是关键中间体,促进了羰基化环化过程。

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