Masaro Chiara, Meloni Giammarco, Baron Marco, Graiff Claudia, Tubaro Cristina, Royo Beatriz
Dipartimento di Scienze Chimiche, Università degli Studi di Padova, via Marzolo 1, 35131, Padova, Italy.
ITQB NOVA, Instituto de Tecnologia Química e Biológica António Xavier, Universidade Nova de Lisboa, Avenida da República, 2780-157, Oeiras, Portugal.
Chemistry. 2023 Dec 1;29(67):e202302273. doi: 10.1002/chem.202302273. Epub 2023 Oct 24.
A series of six Mn(I) complexes with general formula [MnBr(bisNHC)(CO) ], having a bidentate bis(N-heterocyclic carbene) ligand (bisNHC), has been developed by varying the bridging group between the NHC donors, the nitrogen wingtip substituents and the heterocyclic ring. The synthesis of the complexes has been accomplished by in situ transmetalation of the bisNHC from the corresponding silver(I) complexes. Removal of the bromide anion affords the corresponding solvento complexes Mn(bisNHC)(CO) (CH CN). The influence of the bisNHC structure on its electron donor ability has been evaluated by FTIR and C NMR spectroscopy, both in the neutral and cationic complexes. Finally, the isolated Mn(I)-bisNHC complexes have been employed as homogeneous catalysts in the reductive N-formylation and N-methylation of amines with CO as C1 source and phenylsilane as reducing agent, showing a high selectivity for the N-methylated product. Preliminary mechanistic investigations suggest that, in the adopted reaction conditions, the formylated product can be formed via different reaction pathways, either metal-catalyzed or not, while the methylation reaction requires the use of the Mn(I) catalyst.
通过改变N-杂环卡宾(NHC)供体之间的桥连基团、氮端基取代基和杂环,已经开发出一系列通式为[MnBr(bisNHC)(CO)]的六种锰(I)配合物,其中含有双齿双(N-杂环卡宾)配体(bisNHC)。这些配合物的合成是通过从相应的银(I)配合物中原位进行双NHC的金属转移来完成的。除去溴阴离子得到相应的溶剂化配合物Mn(bisNHC)(CO)(CH₃CN)。通过FTIR和¹³C NMR光谱,在中性和阳离子配合物中评估了双NHC结构对其给电子能力的影响。最后,分离得到的锰(I)-双NHC配合物已被用作均相催化剂,用于以CO作为C1源和苯基硅烷作为还原剂的胺的还原N-甲酰化和N-甲基化反应,对N-甲基化产物表现出高选择性。初步机理研究表明,在所采用的反应条件下,甲酰化产物可以通过不同的反应途径形成,无论是金属催化的还是非催化的,而甲基化反应需要使用锰(I)催化剂。