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Gold microelectrode ensembles: cheap,reusable and stable electrodes for the determination of arsenic (V) under aerobic conditions
Authors:Elza A. Zakharova  Galina N. Noskova  Neil V. Rees  Richard G. Compton
Affiliation:1. Division of Chemical Technology , Tomsk Polytechnic University , Tomsk, 634050 , Russia;2. Department of Chemistry , Physical &3. Theoretical Chemistry Laboratory , Oxford , OX1 3QZ , UK
Abstract:The determination of total arsenic through As(V) anodic stripping voltammetry (ASV) is, in some cases, preferable over As(III) ASV. The As(V) ASV procedure has no chemical reduction step from As(V) into As(III), which results in decreased analysis time and no contamination from reducting reagents. A simple and reliable procedure of As(V) determination is proposed. Anodic stripping determination of trace As(V) at gold microelectrode ensembles in diluted HCl solution in the presence of dissolved oxygen is shown. The electrode is based on a carbon black (30%)–polyethylene composite. The sensor was prepared by gold electrodeposition on the surface of the composite electrode. The given sensor is cheap, reliable and stable, especially when electrochemical activation is employed. The experimental parameters for the electrochemical determination were optimized, namely 0.005?M HCl as the background electrolyte, the deposition potential ?2.2?V (versus Ag/AgCl in 1?M KCl) and 180?mV?s?1 linear scan rate. Calibration curves were obtained and were linear in [As(V)] over the 1.5–45?µg?L?1 range, with a LOD of 0.5?µg?L?1. The effect of common interfering species is studied. The electrochemical behaviour of As(III) form is studied in the same experimental conditions. It was found that As(III) is deposited at lower potentials (starting at ?0.6?V) and the sensitivity of As(III) detection is higher, but dependant on the presence of dissolved oxygen. The speciation of inorganic forms of arsenic is discussed.
Keywords:stripping voltammetry  arsenic  As(V)  As(III)  total inorganic arsenic  gold  microelectrode  random array of microelectrodes  aerated medium  dissolved oxygen  speciation
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