Sensing and Bio-Sensing Research · 2021 · 16 citations · 36 references
Environmental ElectrochemistryChemical EngineeringBiomedical SensorsEngineeringBiosensing SystemsSitu ElectrodepositionAnalytical ChemistrySensor PlatformDft CalculationsChemistrySquare WaveElectroanalytical SensorCation SensingChemical SensorElectrode Reaction MechanismElectrochemistry
Herein, a sensor platform, Bi/carboxyphenyl-modified glassy carbon electrode (Bi/CP/GCE), is presented for the detection of Cd2+ and Pb2+ using square wave anodic stripping voltammetry (SWASV). The sensor was obtained through electrografting of the GCE using 4-carboxybenzene diazonium tetrafluoroborate (4-CBD) and in situ electrodeposition of Bi3+. The stability of the grafted layer and the proposed mechanism of interaction between the metal ions and the grafted layer is supported by DFT calculations. Under the optimized conditions, Pb2+ had a linear working range of 25–500 μg L−1 with LOD of 10 μg L−1 (S/N = 3) and Cd2+ provided linear range of 50–500 μg L−1 and LOD of 25 μg L−1. The fabricated electrode presented good repeatability and reproducibility. The applicability of the electrode was tested for determination of Cd2+ and Pb2+ in tap water resulting in recoveries of 96.2–101% for Cd2+ and 98.1–104% for Pb2+.
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Generalized Gradient Approximation Made Simple
John P. Perdew, Kieron Burke, Matthias Ernzerhof · Physical Review Letters · 1996 · 203.9K citations · Full text
Coralie Saby, Bertha Ortiz, Gilles Y. Champagne et al. · Langmuir · 1997 · 487 citations
Materials Science, Chemical Engineering, Substituted Phenyl Group +14