Hernández-Juárez Martín, López-Serrano Joaquín, Lara Patricia, Morales-Cerón Judith P, Vaquero Mónica, Álvarez Eleuterio, Salazar Verónica, Suárez Andrés
Centro de Investigaciones Químicas, Universidad Autónoma del Estado de Hidalgo, Carretera Pachuca-Tulacingo Km 4.5, 42184 Mineral de la Reforma, Hidalgo (Mexico).
Chemistry. 2015 May 11;21(20):7540-55. doi: 10.1002/chem.201406040. Epub 2015 Mar 27.
A series of Ru complexes containing lutidine-derived pincer CNC ligands have been prepared by transmetalation with the corresponding silver-carbene derivatives. Characterization of these derivatives shows both mer and fac coordination of the CNC ligands depending on the wingtips of the N-heterocyclic carbene fragments. In the presence of tBuOK, the Ru-CNC complexes are active in the hydrogenation of a series of imines. In addition, these complexes catalyze the reversible hydrogenation of phenantridine. Detailed NMR spectroscopic studies have shown the capability of the CNC ligand to be deprotonated and get involved in ligand-assisted activation of dihydrogen. More interestingly, upon deprotonation, the Ru-CNC complex 5 e(BF4 ) is able to add aldimines to the metal-ligand framework to yield an amido complex. Finally, investigation of the mechanism of the hydrogenation of imines has been carried out by means of DFT calculations. The calculated mechanism involves outer-sphere stepwise hydrogen transfer to the C-N bond assisted either by the pincer ligand or a second coordinated H2 molecule.
通过与相应的银卡宾衍生物进行金属转移反应,制备了一系列含有二甲基吡啶衍生的钳形CNC配体的钌配合物。对这些衍生物的表征表明,根据N-杂环卡宾片段的翼尖,CNC配体存在面式和经式配位。在叔丁醇钾存在下,钌-CNC配合物对一系列亚胺的氢化反应具有活性。此外,这些配合物催化菲啶的可逆氢化反应。详细的核磁共振光谱研究表明,CNC配体具有去质子化的能力,并参与了配体辅助的氢气活化过程。更有趣的是,去质子化后,钌-CNC配合物5 e(BF4 )能够将醛亚胺加成到金属-配体骨架上,生成酰胺基配合物。最后,通过密度泛函理论计算对亚胺氢化反应的机理进行了研究。计算得到的机理涉及通过钳形配体或第二个配位的H2分子辅助,将氢逐步从外层转移到C-N键上。