Reactivity of the tri-µ-hydroxo-bis[triamminecobalt(III)] ion in halide media
Abstract
The kinetics of acid hydrolysis of trans-[(H2O)(NH3)3Co(µ-OH)2Co(NH3)3(H2O)]4+ in acidic chloride and bromide solutions was studied using stopped-flow and conventional spectrophotometric techniques, at an ionic strength of 1.0 mol dm–3 and over the ranges 0.10 ⩽[H+]⩽ 0.50 mol dm–3, 0.10 ⩽[X–]⩽ 0.50 mol dm–3, 25 ⩽T⩽ 35 °C and in binary aqueous cosolvent mixtures containing up to 40% methanol by volume. The rate equation observed was of the form kobs=(kc[H+]+k′c)[X–]. At 25 °C the rate constants kc were 1.10 × 10–2 and 1.22 × 10–3 dm6 mol–2 s–1 in chloride and bromide solutions respectively for the [H+]-dependent term. The corresponding values for the [H+]-independent pathway, k′c, were 4.5 × 10–4 and 0.7 × 10–4 dm3 mol–1 s–1. The activation parameters in chloride solution were ΔH‡(kc)= 51 ± 14 kJ mol–1, ΔS‡(kc)=–110 ± 48 J K–1 mol–1; ΔH‡(k′c)= 132 ± 32 kJ mol–1 and ΔS‡(k′c)= 136 ± 105 J K–1 mol–1. At constant [H+](0.5 mol dm–3) the reaction was first order with respect to [Cl–] and [Br–] and the rate constants, kd, were 4.5 × 10–3 and 3.3 × 10–3 dm3 mol–1 s–1 respectively.