Rate constants for thiocyanate substitution at Mo and W on the trinuclear incomplete-cuboidal clusters [Mo2WS4(H2O)9]4+ and [MoW2S4(H2O)9]4+
Abstract
Rate constants (25 °C) have been determined for two kinetic stages, both in the stopped-flow range, for substitution by NCS– on the trinuclear clusters [Mo2WS4(H2O)9]4+ and [Mo2W2S4(H2O)9]4+, l= 2.00 M (LiCIO4). All the metal atoms are in oxidation state IV. Both steps are dependent on [NCS–] and statistical factors for the first stages, 2 in the case of the Mo2W and 1 in the case of the MoW2 complex, are consistent with substitution at the Mo. Variations in [H+] were carried out in the case of the Mo2W complex and indicate contributions from conjugate-base pathways for both the first and second stages. That for the second stage is consistent with an assignment of substitution at the W, and not the second d-H2O on each Mo. From a comparison of rate constants in 2.00 M HCIO4 it is clear that substitution at the Mo and W of the Mo2W and MoW2 complexes is little changed and within 50% of values for the homonuclear trinuclear clusters [Mo3S4(H2O)9]4+ and [W3S4(H2O)9]4+ respectively. As previously, the substitution at MoIV is ≈ 10 times faster than at WIV.