ACS Sensors · 2020 · 27 citations · 35 references
Four Lewis acidic organo-antimony(V) compounds with strong binding affinity to fluoride were used for the first time as ionophores to fabricate polymeric membrane fluoride-selective electrodes. Improved detection limits and significant anti-Hofmeister selectivity could be achieved by optimizing ionophores, lipophilic additives, and plasticizers. Membrane electrodes fabricated with tetrakis-(pentafluorophenyl)stibonium (ionophore <b>2</b>) performed best in detection limit, sensitivity, and selectivity. Optimal performance was obtained by fluoride with a slope of -59.5 mV/decade in the linear range of 1 × 10<sup>-5</sup> to 4 × 10<sup>-2</sup> M and a detection limit of 5 × 10<sup>-6</sup> M. Studies on the influence of sample solution pH demonstrate that the best pH for fluoride determination is pH 3.0. All of the electrodes studied respond rapidly (in 1 min) in different concentrations of fluoride solutions. The anion-ionophore complex constants in the membrane phase determined using the segmented sandwich membrane method correlate well with the solution-phase binding data and determined selectivity sequence of the ion-selective electrodes. The possibility of real life application of the optimized electrodes was assessed by determination of fluoride concentrations in tap water.
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Electrode for Sensing Fluoride Ion Activity in Solution
Martin S. Frant, James W. Ross · Science · 1966 · 667 citations
Elena Zdrachek, Eric Bakker · Analytical Chemistry · 2018 · 316 citations · Full text
Recent advances in potentiometric biosensors
Jiawang Ding, Wei Qin · TrAC Trends in Analytical Chemistry · 2020 · 297 citations · Full text