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May 20, 2026International Journal of Molecular Sciences0 citationsOpen Access

Ion-Selective Electrodes for Ammonium and Nitrate Determination: Recent Advances, Trends and Perspectives

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KMKlaudia MorawskaCWCecylia Wardak

Key Points

  • This review aims to assess the current state and trends of ion-selective electrodes for ammonium and nitrate detection.
  • Reviewed 64 nitrate and 22 ammonium electrodes from 2020 to 2026.
  • Classified electrodes based on sensitivity, application in soil and aquatic environments, and laboratory-only designs.
  • Compiled analytical parameters such as sensitivity, detection limits, linearity, and operating conditions.
  • Identified various electrode types and materials enhancing ion-to-electron conductivity.
  • Detailed sensitivity and performance metrics for each electrode type.
  • Provided insights into practical applications in environmental monitoring.

Abstract

In response to increasing environmental protection requirements and the rapid advancement of analytical technologies, particular attention is being paid to the development of environmentally friendly, cost-effective, and sensitive measurement tools. One of the key challenges in modern analytics is the effective monitoring of inorganic nitrogen in the natural environment. In this review, we present a variety of ammonium and nitrate ion-selective electrodes. The review includes the years 2020–2026. It was divided into sections based on sensitivity to a given ion, as well as into subsections based on application: monitoring of soil and aquatic environments, the use of sensors for the determination of specific ions in a wide range of samples, and electrode designs that were used only in laboratory studies. A total of 64 nitrate electrodes and 22 ammonium electrodes were analyzed. Comparisons were made based on electrode type, type of internal contact, materials used to enhance ion-to-electron conductivity, and type of ionophore. Additionally, analytical parameters were compiled, including sensitivity, detection limit, linearity range, potential stability, operating pH range, and actual application scenarios. This review allows for an assessment of current trends and may serve as a basis for the design of new potentiometric sensors.

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Cite This Study

Morawska et al. (2026) studied this question.

synapsesocial.com/papers/6a0d5025f03e14405aa9bd53https://doi.org/10.3390/ijms27104432
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