2015ElectroanalysisRequires access

New Potentiometric Electronic Tongue for Analysing Teas and Infusions

María Cuartero, Alicia Carretero, María Soledad Aguirre García, J. Ortuño

Open publisher page 15 citations

Abstract

Abstract In this work, an electronic tongue (ET) system is developed for the discrimination of infusions and teas made from different herb leaves. The ET is based on an array of four non‐specific potentiometric sensors plus principal component analysis (PCA) data processing. The four sensors used are a cation‐selective electrode and an anion‐selective electrode, containing both a plasticized polymeric membrane with different ionic additives, a commercial pH electrode and a redox electrode. These provide simple, rapid and very reproducible potentiometric responses after direct exposure to infusions and teas, which do not need any pre‐treatment. A radar plot of potentiometric values for each sensor, obtained after sixty seconds of array exposure to the samples, revealed a differentiated response for each sensor and infusion. This was especially marked for anion‐selective and redox electrodes. The PCA results of the potentiometric signals point to certain trends that can be used for classification purposes. Although a small number of sensors is used in the developed ET, interesting classification functions have been achieved, which will be exploited in the near future with a larger number of samples. The concept of an ET formed by a reduced number of potentiometric sensors is starting to spread to other types of beverages.

About this research paper

What this paper is about

Abstract In this work, an electronic tongue (ET) system is developed for the discrimination of infusions and teas made from different herb leaves. The ET is based on an array of four non‐specific potentiometric sensors plus principal component analysis (PCA) data processing. The four sensors used are a cation‐selective electrode and an anion‐selective electrode, containing both a plasticized polymeric membrane with different ionic additives, a commercial pH electrode and a redox electrode. These provide simple, rapid and very reproducible potentiometric responses after direct exposure to infusions and teas, which do not need any pre‐treatment. A radar plot of potentiometric values for each sensor, obtained after sixty seconds of array exposure to the samples, revealed a differentiated response for each sensor and infusion. This was especially marked for anion‐selective and redox electrodes. The PCA results of the potentiometric signals point to certain trends that can be used for classification purposes. Although a small number of sensors is used in the developed ET, interesting classification functions have been achieved, which will be exploited in the near future with a larger number of samples. The concept of an ET formed by a reduced number of potentiometric sensors is starting to spread to other types of beverages.

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Available abstract

Abstract In this work, an electronic tongue (ET) system is developed for the discrimination of infusions and teas made from different herb leaves. The ET is based on an array of four non‐specific potentiometric sensors plus principal component analysis (PCA) data processing. The four sensors used are a cation‐selective electrode and an anion‐selective electrode, containing both a plasticized polymeric membrane with different ionic additives, a commercial pH electrode and a redox electrode. These provide simple, rapid and very reproducible potentiometric responses after direct exposure to infusions and teas, which do not need any pre‐treatment. A radar plot of potentiometric values for each sensor, obtained after sixty seconds of array exposure to the samples, revealed a differentiated response for each sensor and infusion. This was especially marked for anion‐selective and redox electrodes. The PCA results of the potentiometric signals point to certain trends that can be used for classification purposes. Although a small number of sensors is used in the developed ET, interesting classification functions have been achieved, which will be exploited in the near future with a larger number of samples. The concept of an ET formed by a reduced number of potentiometric sensors is starting to spread to other types of beverages.

Key concepts: Potentiometric titration, Electronic tongue, Potentiometric sensor, Chemistry, Electrode, Ion selective electrode, Principal component analysis, Redox

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New Potentiometric Electronic Tongue for Analysing Teas and Infusions — Research Paper | ScholarLens