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Electrochemical evaluation of the a carbon-paste electrode modified with spinel manganese(IV) oxide under flow conditions for amperometric determination of lithium
Authors:Paulo A. Raymundo-Pereira  Cibely S. Martin  Marcio F. Bergamini  Nerilso Bocchi  Marcos F.S. Teixeira
Affiliation:aDepartment of Physics, Chemistry and Biology, Faculty of Science and Technology, University of State of Sao Paulo (UNESP), Rua Roberto Simonsen, 305, CEP 19060-900, Presidente Prudente, SP, Brazil;bDepartamento de Química, Universidade Federal do Paraná, Curitiba, PR, Brazil;cDepartamento de Química, Universidade Federal de São Carlos, São Carlos, SP, Brazil
Abstract:The participation of cations in redox reactions of manganese oxides provides an opportunity for development of chemical sensors for non-electroactive ions. This paper describes the amperometric determination of lithium ions using carbon-paste electrode modified with spinel manganese(IV) oxide under flow conditions. Systematic investigations were made to optimize the experimental parameters for lithium sensor by flow injection analysis. The detection was based on the measurement of anodic current generated by oxidation of Mn(III) to Mn(IV) at the surface of the electrode and consequently the lithium ions extraction into the spinel structure. An operating potential of 0.50 V (vs. Ag/AgCl/3 KCl mol/L) was exploited for amperometric monitoring. The amperometric signal was linearly dependent on the lithium ions concentration over the range 4.0 × 10−5 to 1.0 × 10−3 mol L−1. The equilibrium constant of insertion/extraction of the lithium ion in the spinel structure, apparent Gibbs energy of insertion, and surface coverage of the electrode with manganese oxide, were calculated by peak charge (Q) in different concentration under flow conditions. Considering selectivity, the peak charge of the sensor was found to be linearly dependent on the ionic radius of the alkaline and earth-alkaline cations.
Keywords:Amperometric sensor   Spinel-type manganese oxide   Non-electroactive ions   Gibbs energy
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