Tandem CuI – Zinc dust as a sustainable catalyst for the preparation of propargylamine derivatives via an A3 coupling reaction, under neat conditions

Mercy E. Agbo, Hannah N. Heinz, Jasmine B. Mather, Jean Fotie
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Abstract

The cooperative activity of two proximal metal ions is well-known to exhibit highly efficient and synergistic catalytic activities in living organisms. Owing to this knowledge, tandem Cu–Zn systems have been widely used to catalyze a diversity of chemical transformations. This report describes the use of CuI and zinc dust as a sustainable tandem catalyst for the preparation of propargylamines via a three-component coupling reaction under neat conditions. This reaction proceeds at low temperature, and produces good yields with a number of aliphatic and aromatic aldehydes. The reactivity of a number of amines and alkynes has also been explored under these reaction conditions, resulting in 33 fully characterized compounds prepared in the process. Among the ketones tested during this study, only cyclohexanone was able to produce the expected product in a decent yield. The catalytic system reported here represents one of the sustainable approaches to the preparation of propargylamines, as it involves the use of naturally abundant metals as a tandem catalyst, at a low temperature and under neat conditions.

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串联CuI -锌粉作为可持续催化剂,在整洁条件下通过A3偶联反应制备丙胺衍生物
众所周知,两种近端金属离子的协同活性在生物体中表现出高效和协同的催化活性。由于这些知识,串联Cu–Zn系统已被广泛用于催化多种化学转化。本报告描述了CuI和锌粉作为一种可持续的串联催化剂在纯条件下通过三组分偶联反应制备炔丙基胺的用途。该反应在低温下进行,并与许多脂肪族和芳香族醛产生良好的产率。在这些反应条件下,还探索了许多胺和炔烃的反应性,得到了33种完全表征的化合物。在这项研究中测试的酮中,只有环己酮能够以可观的产量生产出预期的产物。本文报道的催化体系代表了制备炔丙基胺的可持续方法之一,因为它涉及在低温和纯条件下使用天然丰富的金属作为串联催化剂。
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