| Literature DB >> 27216652 |
Carlos Rojas-Romo1, Núria Serrano2, Cristina Ariño3, Verónica Arancibia4, José Manuel Díaz-Cruz3, Miquel Esteban3.
Abstract
The determination of Sb(III) on an ex-situ bismuth screen-printed carbon electrode (ex-situ BiSPCE) by means of adsorptive stripping voltammetry (AdSV) using quercetin-5'-sulfonic acid as chelating agent was optimized. The effect of different experimental parameters such pH, ligand concentration (CQSA), accumulation potential (Eacc) and accumulation time (tacc) were studied to obtain a wide linear range, the highest sensitivity and the lowest detection limit. Ex-situ BiSPCE was analytically compared with a sputtered bismuth screen-printed electrode (BispSPE) under optimal conditions. The obtained analytical parameters suggest that ex-situ BiSPCE behaves much better than BispSPE and the first was selected for this study. Optimal parameters were pH=4.6; CQSA=10.0 to 20.0×10(-6)molL(-1); Eacc=-0.5V and tacc=60s. Peak area is proportional to Sb(III) concentration up to 100.0μgL(-1) (tacc 60s) and 45.0μgL(-1) (tacc 120s) range, with detection limits of 1.2μgL(-)(1) (tacc 60s) and 0.8μgL(-1) (tacc 120s). The relative standard deviation for a Sb(III) solution (20.0μgL(-1)) was 3.9% for ten successive assays. Thus, the effect of various interfering metal ions was studied and the methodology was validated using a spiked groundwater reference material with very satisfactory results.Entities:
Keywords: Adsorptive stripping voltammetry; Bismuth film electrode; Determination of antimony; Quercetin-5′-sulfonic acid; Screen-printed electrode
Year: 2016 PMID: 27216652 DOI: 10.1016/j.talanta.2016.04.015
Source DB: PubMed Journal: Talanta ISSN: 0039-9140 Impact factor: 6.057