Homogeneous, Supramolecular and Bio-inspired Catalysis Group (HomKat), van 't Hoff Institute for Molecular Sciences (HIMS) , Universiteit van Amsterdam (UvA) , Amsterdam 1012 WX , The Netherlands.
Department of Chemistry , John Hopkins University , Baltimore , Maryland 21218 , United States.
J Am Chem Soc. 2019 Sep 25;141(38):15240-15249. doi: 10.1021/jacs.9b07140. Epub 2019 Sep 10.
Direct synthetic routes to amidines are desired, as they are widely present in many biologically active compounds and organometallic complexes. -Acyl amidines in particular can be used as a starting material for the synthesis of heterocycles and have several other applications. Here, we describe a fast and practical copper-catalyzed three-component reaction of aryl acetylenes, amines, and easily accessible 1,4,2-dioxazol-5-ones to -acyl amidines, generating CO as the only byproduct. Transformation of the dioxazolones on the Cu catalyst generates acyl nitrenes that rapidly insert into the copper acetylide Cu-C bond rather than undergoing an undesired Curtius rearrangement. For nonaromatic dioxazolones, [Cu(OAc)(Xantphos)] is a superior catalyst for this transformation, leading to full substrate conversion within 10 min. For the direct synthesis of -benzoyl amidine derivatives from aromatic dioxazolones, [Cu(OAc)(Xantphos)] proved to be inactive, but moderate to good yields were obtained when using simple copper(I) iodide (CuI) as the catalyst. Mechanistic studies revealed the aerobic instability of one of the intermediates at low catalyst loadings, but the reaction could still be performed in air for most substrates when using catalyst loadings of 5 mol %. The herein reported procedure not only provides a new, practical, and direct route to -acyl amidines but also represents a new type of C-N bond formation.
人们希望能够直接合成酰胺,因为酰胺广泛存在于许多具有生物活性的化合物和有机金属配合物中。特别是酰基酰胺可用作合成杂环化合物的起始原料,并且还有其他几种应用。在这里,我们描述了一种快速而实用的铜催化的三组分反应,该反应涉及芳基乙炔、胺和易于获得的 1,4,2-二恶唑-5-酮,可生成酰基酰胺,仅生成 CO 作为唯一的副产物。二恶唑酮在 Cu 催化剂上的转化会生成酰基氮宾,这些氮宾迅速插入铜炔键 Cu-C 中,而不是发生不希望的Curtius重排。对于非芳族二恶唑酮,[Cu(OAc)(Xantphos)]是这种转化的优越催化剂,可在 10 分钟内实现完全底物转化。对于从芳族二恶唑酮直接合成 -苯甲酰酰胺衍生物,[Cu(OAc)(Xantphos)]证明是无效的,但当使用简单的碘化亚铜 (CuI) 作为催化剂时,可获得中等至良好的产率。机理研究表明,在低催化剂负载下,一种中间体的有氧不稳定性,但当使用 5 mol %的催化剂负载时,该反应仍可在空气条件下进行。所报道的方法不仅提供了一种新的、实用的和直接的酰基酰胺合成方法,而且代表了一种新型的 C-N 键形成方法。