Am. Bond et al., THE ELECTROCHEMISTRY OF MONOBUTYLTIN AND MIXTURES OF BUTYLTIN COMPOUNDS AT MERCURY-ELECTRODES IN AQUEOUS-MEDIA, Analytica chimica acta, 310(1), 1995, pp. 109-119
The electrochemical reduction of dilute aqueous solutions of monobutyl
tin containing nitrate and chloride electrolytes has been examined at
mercury electrodes using the techniques of direct current polarography
, cyclic voltammetry, differential pulse polarography and differential
pulse voltammetry. In the present study, the processes were found to
be much more reversible than reported in earlier investigations where
more concentrated solutions were examined using direct current techniq
ues. The primary charge transfer process is a reversible three-electro
n reduction step which occurs at approximately -0.5 V vs. Ag/AgCl (3 M
KCl) and corresponds to the reaction. [GRAPHICS] At slightly more neg
ative potentials, the reduction process at a stationary mercury electr
ode, but not significantly at a dropping mercury electrode, is inhibit
ed by adsorption and polymerisation of the reaction product. However,
at considerably more negative potentials, the exact value of which is
strongly dependent on the solution conditions, product adsorption and
electrode blockage by film formation ceases to occur. The electrochemi
stry of mixtures of monobutyltin, dibutyltin and tributyltin also has
been examined. Interactions between the electrode processes implies th
at the direct and simultaneous voltammetric determination of these for
ms of butyltin compounds in aqueous samples is extremely problematic.