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First Stabilization of 14‐Electron Rhodium(I) Complexes by Hemichelation
Authors:Christophe Werlé  Corinne Bailly  Dr Lydia Karmazin‐Brelot  Xavier‐Frédéric Le?Goff  Dr Michel Pfeffer  Dr Jean‐Pierre Djukic
Institution:1. Institut de Chimie de Strasbourg, UMR 7177 CNRS, Université de Strasbourg, 4 rue Blaise Pascal, 67070 Strasbourg Cedex (France) http://lcsom.u‐strasbg.fr;2. Département de Chimie, Ecole Polytechnique, Palaiseau cedex (France)
Abstract:Hemichelation is emerging as a new mode of coordination where non‐covalent interactions crucially contribute to the cohesion of electron‐unsaturated organometallic complexes. This study discloses an unprecedented demonstration of this concept to a Group 9 metal, that is, RhI. The syntheses of new 14‐electron RhI complexes were achieved by choosing the anti‐66‐fluorenyl){Cr(CO)3}2] anion as the ambiphilic hemichelating ligand, which was treated with {Rh(nbd)Cl}2] (nbd=norbornadiene) and {Rh(CO)2Cl}2]. The new T‐shaped RhI hemichelates were characterized by analytical and structural methods. Investigations using the methods of the DFT and electron‐density topology analysis (NCI region analysis, QTAIM theory) confirmed the closed‐shell, non‐covalent and attractive characters of the interaction between the RhI center and the proximal Cr(CO)3 moiety. This study shows that, by appropriate tuning of the electronic properties of the ambiphilic ligand, truly coordination‐unsaturated RhI complexes can be synthesized in a manageable form.
Keywords:chromium  coordination modes  hemichelation  metal–  metal interactions  rhodium
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