We describe new compounds of stoichiometry M(CHNMeBH) (M = Ti, Cr, and Co), each of which contains three chelating boranatodimethylaminomethyl (BDAM) ligands. In all three compounds, the BDAM anion, which is isoelectronic and isostructural with the neopentyl group, is bound to the metal center at one end by a metal-carbon σ bond and at the other by one three-center M-H-B interaction. The crystal structures show that the d titanium(III) compound is trigonal prismatic (or eight-coordinate, if two longer-ranged M···H interactions with the BH groups are included), whereas the d chromium(III) compound and the d cobalt(III) compounds are both -octahedral. The Cr and Co compounds exhibit two rapid dynamic processes in solution: exchange between the Δ and Λ enantiomers and exchange of the terminal and bridging hydrogen atoms on boron. For the Co complex, the barrier for Δ/Λ exchange (Δ = 10.1 kcal mol) is significantly smaller than those seen in other octahedral cobalt(III) compounds; DFT calculations suggest that Bailar twist and dissociative pathways for Δ/Λ exchange are both possible mechanisms. The UV-vis absorption spectra of the cobalt(III) and chromium(III) species show that the ligand field splittings Δ caused by the M-H-B interactions are unexpectedly large, thus placing them high on the spectrochemical series (near ammonia and alkyl groups); their nephelauxetic effect is also large. The DFT calculations suggest that these properties of M-H-B interactions are in part a consequence of their three-center nature, which delocalizes electron density away from the metal center and reduces electron-electron repulsions.

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http://dx.doi.org/10.1021/jacs.3c07336DOI Listing

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Article Synopsis
  • The synthesis and characterization of the quadruply-bonded dimer Mo(CHNMeBH) is reported, with each molybdenum(II) center connected to two BDAM ligands, resulting in an unbridged Mo-Mo bond.
  • Structural and solution NMR data, analyzed through McConnell's equation and supported by DFT calculations, reveal that ligand-induced magnetic anisotropies can distort NMR chemical shifts, leading to potential overestimations of metal-metal bond contributions.
  • A new method is proposed to quantify and correct these ligand effects, suggesting that the magnetic anisotropy of the Mo-Mo quadruple bond is approximately -800 × 10 m molecule, challenging previous inflated estimates in the literature.
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We describe new compounds of stoichiometry M(CHNMeBH) (M = Ti, Cr, and Co), each of which contains three chelating boranatodimethylaminomethyl (BDAM) ligands. In all three compounds, the BDAM anion, which is isoelectronic and isostructural with the neopentyl group, is bound to the metal center at one end by a metal-carbon σ bond and at the other by one three-center M-H-B interaction. The crystal structures show that the d titanium(III) compound is trigonal prismatic (or eight-coordinate, if two longer-ranged M···H interactions with the BH groups are included), whereas the d chromium(III) compound and the d cobalt(III) compounds are both -octahedral.

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Three-center, two-electron M...H-B bonds in complexes of Ni, Co, and Fe and the dihydrobis(3-tert-butylpyrazolyl)borate ligand.

Inorg Chem

January 2002

Instituto de Investigaciones Químicas-Departamento de Química Inorgánica, Universidad de Sevilla-Consejo Superior de Investigaciones Científicas, Sevilla, Spain.

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