Reckziegel Alexander, Pietzonka Clemens, Kraus Florian, Werncke C Gunnar
Fachbereich 15/Chemie, Philipps-Universität Marburg, Hans-Meerwein-Straße 4, 35043, Marburg, Germany.
Angew Chem Int Ed Engl. 2020 May 25;59(22):8527-8531. doi: 10.1002/anie.201914718. Epub 2020 Mar 27.
The 3d-metal mediated nitrene transfer is under intense scrutiny due to its potential as an atom economic and ecologically benign way for the directed amination of (un)functionalised C-H bonds. Here we present the isolation and characterisation of a rare, trigonal imido cobalt(III) complex, which bears a rather long cobalt-imido bond. It can cleanly cleave strong C-H bonds with a bond dissociation energy of up to 92 kcal mol in an intermolecular fashion, unprecedented for imido cobalt complexes. This resulted in the amido cobalt(II) complex [Co(hmds) (NH Bu)] . Kinetic studies on this reaction revealed an H atom transfer mechanism. Remarkably, the cobalt(II) amide itself is capable of mediating H atom abstraction or stepwise proton/electron transfer depending on the substrate. A cobalt-mediated catalytic application for substrate dehydrogenation using an organo azide is presented.
由于3d-金属介导的氮烯转移作为一种对(未)官能化C-H键进行定向胺化的原子经济且生态友好的方式具有潜力,因此受到了广泛关注。在此,我们展示了一种罕见的三角亚氨基钴(III)配合物的分离与表征,该配合物具有相当长的钴-亚氨基键。它能够以分子间方式干净利落地裂解键解离能高达92 kcal mol的强C-H键,这对于亚氨基钴配合物来说是前所未有的。这产生了酰胺基钴(II)配合物[Co(hmds)(NH Bu)]。对该反应的动力学研究揭示了一种氢原子转移机制。值得注意的是,钴(II)酰胺本身能够根据底物介导氢原子提取或逐步质子/电子转移。还展示了使用有机叠氮化物进行钴介导的底物脱氢催化应用。