Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
7232793 | Biosensors and Bioelectronics | 2015 | 8 Pages |
Abstract
The presence of the Hg2+ in solution leads to the formation of T-Hg-T complex thus causing the “hairpin-like” folding of oligonucleotide, leading to an improved electronic exchange of methylene blue with the electrode surface due to the reduced distance and thus to an increase of the faradic current which is detected by means of square wave voltammetry (SWV). To test the feasibility of this kind of biosensor to be applied to the analysis of Hg2+ we have developed several biosensors configuration by modifying the electrochemical sensor transducer: (a) Au electrode; (b) Au screen-printed electrode (SPE). The proposed system, allows the determination of Hg2+ in the range 0.2-100 nM (0.05-20 ppb), with a sensitivity 0.327 µA/nM, LOD 0.1 nM (0.02 ppb), LOQ 0.2 nM (0.05 ppb) and RSD â¤4.3% when Au electrode is used as electrochemical transducer; on the other hand, in the case of Au SPE the linear range is 0.2-50 nM (0.05-10 ppb), with a sensitivity 0.285 µA/nM, while LOD and LOQ are the same as previously and RSD is â¤3.8%. This enabled the detection of mercury in real samples (waters and fishes) with good accuracy (recoveries 92-101% on waters and 92-107% on fishes, respectively) and reproducibility (RSD â¤9.6% for measurements on waters and â¤8.8% on fishes, respectively).
Keywords
Related Topics
Physical Sciences and Engineering
Chemistry
Analytical Chemistry
Authors
Cristina Tortolini, Paolo Bollella, Marta Letizia Antonelli, Riccarda Antiochia, Franco Mazzei, Gabriele Favero,