Aqueous chemistry of thallium(II). Part I. Kinetics of reaction of thallium(II) with cobalt(II) and iron(III) ions and oxidation–reduction potentials of thallium(II)
Abstract
Reactions of Tl2+ ions [generated by flash photolysis of thallium(III) solutions] with cobalt(II) and iron(III) have been studied. For the reaction Tl2++ Co2+⇌ Tl++ Co3+ the forward rate constant is (6·2 ± 0·5)× 103 l mol–1 s–1(25 °C, [H+]= 0·25, I= 0·75M) and the equilibrium constant calculated from this rate constant and that of the reverse reaction is 2·0 × 106. The forward rate constant for the reaction Tl2++ Fe3+⇌ Tl3++ Fe2+ is (1·1 ± 0·15)× 106 l mol–1 s–1(25 °C, [H+]= 0·25, I= 0·30M) and the equilibrium constant calculated from this value and that of the reverse reaction is 2·4 × 107. Standard reduction potentials for the reactions Tl3++e -⇌ Tl2+(E10) and Tl2++ e–⇌ Tl+(E20) are +0·33 ± 0·05 and +2·22 ± 0·05 V respectively. The thermal electron-exchange reaction between thallium(I) and thallium(III) is discussed and a mechanism involving intermediate formation of Tl2+ ions is shown to be inconsistent with equilibrium and kinetic data. The disproportionation reaction Tl2++ Tl2+→ Tl++ Tl3+ has a rate constant of (5·5 ±0·5)× 108 l mol–1 s–1(25 °C, [H+]= 0·25, I= 0·25M) and is diffusion controlled with an activation energy of 7·9 ± 1·5 kJ mol–1.