Department of Inorganic Chemistry, University of Pécs, Ifjúság útja 6, H-7624 Pecs, Hungary.
János Szentágothai Research Centre, University of Pécs, Ifjúság útja 20, H-7624 Pecs, Hungary.
Molecules. 2021 Dec 21;27(1):4. doi: 10.3390/molecules27010004.
The aminocarbonylation of 6-iodoquinoline has been investigated in the presence of large series of amine nucleophiles, providing an efficient synthetic route for producing various quinoline-6-carboxamide and quinoline-6-glyoxylamide derivatives. It was shown, after detailed optimization study, that the formation of amides and ketoamides is strongly influenced by the reaction conditions. Performing the reactions at 40 bar of carbon monoxide pressure in the presence of Pd(OAc)/2 PPh, the corresponding 2-ketocarboxamides were formed as major products (up to 63%). When the monodentate triphenylphosphine was replaced by the bidentate XantPhos, the quinoline-6-carboxamide derivatives were synthesized almost exclusively under atmospheric conditions (up to 98%). The isolation and characterization of the new carbonylated products of various structures were also accomplished. Furthermore, the structure of three new mono- and double-carbonylated compounds were unambiguously established by using a single-crystal XRD study.
6-碘喹啉的氨甲酰化反应在一系列胺亲核试剂的存在下进行,为合成各种喹啉-6-甲酰胺和喹啉-6-恶二唑甲酰胺衍生物提供了一种有效的合成方法。经过详细的优化研究表明,酰胺和酮酰胺的形成强烈受到反应条件的影响。在 40 巴一氧化碳压力下,Pd(OAc)/2 PPh 的存在下进行反应,主要生成相应的 2-酮甲酰胺(高达 63%)。当单齿三苯基膦被双齿 XantPhos 取代时,在大气条件下几乎可以专一地合成喹啉-6-甲酰胺衍生物(高达 98%)。还完成了各种结构的新羰基化产物的分离和表征。此外,通过单晶 XRD 研究,明确建立了三个新的单羰基和双羰基化合物的结构。