A Sensor to Analyze Fish Freshness: A Virtual Sensor Array Based on an Electrochemical Chemotransistor.
Yulia Efremenko1, Eya Boughanmi1,2, Vladimir M Mirsky1
1Nanobiotechnology Department, Institute of Biotechnology, Brandenburg University of Technology Cottbus-Senftenberg, 01968 Senftenberg, Germany.
Sensors (Basel, Switzerland)
|July 15, 2026
Summary
A novel electrochemical sensor quantifies fish freshness, predicting remaining storage time. This sensor uses a specialized electrolyte and polyaniline to analyze fish spoilage, offering a quantitative measure of quality.
Area of Science:
- Electrochemistry
- Food Science
- Sensor Technology
Background:
- Accurate fish freshness assessment is crucial for food safety and quality control.
- Existing methods for determining fish spoilage lack quantitative precision and real-time capabilities.
- A quantitative definition of fish freshness is needed to estimate remaining storage time.
Purpose of the Study:
- To develop and validate an electrochemical sensor system for quantitatively measuring fish freshness.
- To establish a method for predicting the remaining storage duration of raw fish.
- To utilize a virtual array of electrochemical chemotransistor-based chemical sensors for this purpose.
Main Methods:
- Optimization of a novel electrolyte comprising a chloride-containing ionic liquid and polymeric acid mixture for sensor stability and performance.
- Application of polyaniline in various redox states as a chemosensitive material with electrically controlled affinity.
- Development of a sensor system utilizing a virtual array of electrochemical chemotransistors and a silver/silver chloride reference electrode.
Main Results:
- The sensor system demonstrated effective trimethylammonium detection.
- Complex, non-exponential, and non-monotonic sensor responses were observed for fish samples, correlating with storage duration.
- A descriptor-based approach was introduced to characterize these complex responses for freshness assessment.
Conclusions:
- The developed sensor system successfully estimates fish storage time based on a quantitative definition of freshness.
- The approach allows for the categorization of fish product quality and prediction of remaining shelf life.
- This technology offers a promising tool for objective and quantitative assessment of fish freshness.
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