Premium
Synthesis, Structure, and Electrochemical Properties of Sterically Protected Molybdenum Trihydride Redox Pairs: A Paramagnetic “Stretched” Dihydrogen Complex?
Author(s) -
Baya Miguel,
Houghton Jennifer,
Daran JeanClaude,
Poli Rinaldo,
Male Louise,
Albinati Alberto,
Gutman Matthias
Publication year - 2007
Publication title -
chemistry – a european journal
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.687
H-Index - 242
eISSN - 1521-3765
pISSN - 0947-6539
DOI - 10.1002/chem.200700293
Subject(s) - protonation , chemistry , electron paramagnetic resonance , adduct , crystallography , thermal decomposition , steric effects , molybdenum , ligand (biochemistry) , stereochemistry , inorganic chemistry , nuclear magnetic resonance , ion , biochemistry , physics , receptor , organic chemistry
Complexes [MoCp # (PMe 3 ) 2 H 3 ] (Cp # =1,2,4‐C 5 H 2 t Bu 3 , 2 a ; C 5 H i Pr 4 , 2 b ) have been synthesized from the corresponding compounds [MoCp # Cl 4 ] ( 1 a , 1 b ) and fully characterized, including by X‐ray crystallography and by a neutron diffraction study for 2 a . Protonation of 2 a led to complex [Mo(1,2,4‐C 5 H 2 t Bu 3 )(PMe 3 ) 2 H 4 ] + ( 3 a ) in THF and to [Mo(1,2,4‐C 5 H 2 t Bu 3 )(PMe 3 ) 2 (MeCN)H 2 ] + ( 4 a ) in MeCN. Complex 4 b analogously derives from protonation of 2 b in MeCN, whereas the tetrahydride complex 3 b is unstable. One‐electron oxidation of 2 a and 2 b by [FeCp 2 ]PF 6 produces the EPR‐active 17‐electron complexes 2 a + and 2 b + . The former is thermally more stable than the latter and could be crystallographically characterized as the PF 6 − salt by X‐ray diffraction, providing evidence for the presence of a stretched dihydrogen ligand (H⋅⋅⋅H=1.36(6) Å). Controlled thermal decomposition of 2 a + yielded the product of H 2 elimination, the 15‐electron monohydride complex [Mo(1,2,4‐C 5 H 2 t Bu 3 )(PMe 3 ) 2 H]PF 6 ( 5 a ), which was characterized by X‐ray crystallography and by EPR spectroscopy at liquid He temperature. The compound establishes an equilibrium with the solvent adduct in THF. An electrochemical study by cyclic voltammetry provides further evidence for a rapid H 2 elimination process from the 17‐electron complexes. In contrast to the previously investigated [MoCp*(dppe)H 3 ] + system (dppe=1,2‐bis(diphenylphosphino)ethane; Cp*=pentamethylcyclopentadienyl), the decomposition of 2 a + by H 2 substitution with a solvent molecule appears to follow a dissociative pathway in MeCN.