Investigation of the Monomer−Dimer Equilibria of Molybdocenes in Water
Christoph Balzarek, Timothy J. R. Weakley, Louis Y. Kuo, David R. Tyler
Abstract
Christoph Balzarek, Timothy J. R. Weakley, Louis Y. Kuo, David R. Tyler
Abstract
Molybdocenes form monomeric and dimeric complexes upon dissolution in water. The solution structures of the molybdocenes at neutral pH are inferred as the monomeric [(CpR) 2 Mo(OH 2 )(OH)] + and the dimeric [(CpR) 2 Mo(μ-OH) 2 Mo(CpR) 2 ] 2+ . The equilibrium constants for the monomer−dimer equilibria were obtained from 1 H NMR dilution studies as K ‘ eq = (7.9 × 10 - 2 ) ± (1.0 × 10 - 3 ) M for R = CH 3 at pD 7 and as K eq = (3.5 × 10 -2 ) ± (1.3 × 10 -3 ) M for R = H at pD 3.5. Qualitatively, the monomer of the CpMe molybdocene is more favored than the Cp analogue, compared to their respective dimers.
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Molybdocenes form monomeric and dimeric complexes upon dissolution in water. The solution structures of the molybdocenes at neutral pH are inferred as the monomeric [(CpR) 2 Mo(OH 2 )(OH)] + and the dimeric [(CpR) 2 Mo(μ-OH) 2 Mo(CpR) 2 ] 2+ . The equilibrium constants for the monomer−dimer equilibria were obtained from 1 H NMR dilution studies as K ‘ eq = (7.9 × 10 - 2 ) ± (1.0 × 10 - 3 ) M for R = CH 3 at pD 7 and as K eq = (3.5 × 10 -2 ) ± (1.3 × 10 -3 ) M for R = H at pD 3.5. Qualitatively, the monomer of the CpMe molybdocene is more favored than the Cp analogue, compared to their respective dimers.
Key concepts: Chemistry, Monomer, Dimer, Equilibrium constant, Dilution, Dissolution, Water dimer, Molecule