DETERMINATION OF TRACES OF COPPER BY ANODIC-STRIPPING VOLTAMMETRY AFTER ITS PRECONCENTRATION VIA AN ION-EXCHANGE ROUTE AT CARBON-PASTE ELECTRODES MODIFIED WITH VERMICULITE
B. Ogorevc et al., DETERMINATION OF TRACES OF COPPER BY ANODIC-STRIPPING VOLTAMMETRY AFTER ITS PRECONCENTRATION VIA AN ION-EXCHANGE ROUTE AT CARBON-PASTE ELECTRODES MODIFIED WITH VERMICULITE, Analytica chimica acta, 305(1-3), 1995, pp. 176-182
Vermiculite clay mineral, a novel modifier, was exploited to prepare m
odified carbon paste electrodes (CPEs), showing attractive ability to
efficiently preconcentrate trace copper(II) prior to its voltammetric
determination. Under open-circuit conditions, copper(II) was preconcen
trated onto the surface of a modified electrode via the ion-exchange c
apability of the modifier. After medium exchange to a pure electrolyte
solution (0.1 M NaNO3 + Britton-Robinson buffer, pH 5), the accumulat
ed copper(II) was reduced at -0.7 V vs. Ag/AgCl during an equilibratio
n period of 20 s and then determined by its re-oxidation employing squ
are-wave anodic stripping voltammetry. The parameters and conditions s
uch as pH of the analyte solution and supporting electrolyte, preconce
ntration time, CPE composition, its activation and regeneration, strip
ping mode and others, were studied in detail. The detection limit (3 s
igma) of the proposed procedure was found to be 5 X 10(-9) mol l(-1) o
f Cu(II) in the analyte solution, for a preconcentration time of 10 mi
n. Applying suitable preconcentration times, a linear calibration grap
h from 1 X 10(-8) mol l(-1) to 8 X 10(-5) mol l(-1) (0.6 mu g l(-1)-5.
1 mg l(-1)) of Cu(II) was established. Multiple determinations (n = 10
), following a preconcentration-measurement-regeneration cycle, gave a
relative standard deviation of 4.9% at Cu(II) concentration of 5 X 10
(-7) mol l(-1). The accuracy of the proposed method was checked by ana
lysing a standard reference material (SRM 1643b).