Amphoteric Zinc(II) Hydride Cations [ZnH]+: Effect of a Bipyridyl Ligand
Pritam Mahawar1, Thayalan Rajeshkumar2, Florian Ritter1
1Institute of Inorganic Chemistry, RWTH Aachen University, Landoltweg 1, 52056 Aachen, Germany.
Abstract:
Terminal zinc hydride cations [(Me2bpy)ZnH(L)][BArF4] (Me2bpy = 6,6'-dimethyl-2,2'-dipyridyl; ArF = 3,5-(CF3)2C6H3; L = THF, 1a; 4-(dimethylamino)pyridine, DMAP, 1b; pyridine, 1c; 4-(trifluoromethyl)pyridine, 1d) show Zn-H distances in the expected range, as exemplified by single-crystal X-ray diffraction for the THF adduct 1a and the pyridine adduct 1c. With the exception of labile 1a, the ν(ZnH) stretching frequencies correlate with the electron donating character of the L ligand. The Zn-H bond shows amphoteric behavior. Reaction of 1a with ZnEt2 gives the cationic ethyl complex [(Me2bpy)ZnEt(thf)][BArF4] (2a), while it undergoes CO2 insertion to form the cationic formato complex [(Me2bpy)Zn(OCHO)(thf)][BArF4] (3a). Thermolysis of 3a at 80 °C gives the dinuclear metalation product 4a, which is also formed by photolysis of 1a. The Zn-H bond of 1a acts as a proton donor when treated with the N-heterocyclic carbene IBu (IBu = 1,3-di-tert-butylimidazol-2-ylidene), giving the imidazolium salt [IBuH][BArF4], zinc metal, and Me2bpy. The deprotonation of the Zn-H bond in 1a occurs with ZnCp*2 (Cp* = pentamethylcyclopentadienyl) to give the dizinc(I) cation [(Me2bpy)Zn-ZnCp*(thf)][BArF4] (6a) and Cp*H. Reaction of 1a with Cp2MoH2 (Cp = η5-cyclopentadienyl) leads to the heterobimetallic complex [(Me2bpy)Zn(μ-H)MoCp2]+[BArF4]- (7) under H2 elimination.
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