Highly Sensitive Graphene-Based Electrochemical Sensor for Nitrite Assay in Waters
Florina Pogăcean1, Codruţa Varodi1, Lidia Măgeruşan1
1National Institute for Research and Development of Isotopic and Molecular Technologies, 67-103 Donat Street, 400293 Cluj-Napoca, Romania.
A new electrochemical sensor using graphene/glassy carbon electrodes (EGr/GC) effectively detects trace nitrite levels in water. This sensor offers high sensitivity and stability for environmental and public health monitoring.
Area of Science:
- Electrochemistry
- Materials Science
- Environmental Chemistry
Background:
- Nitrite ions are crucial in environmental and public health contexts.
- Increased exposure to nitrites from fertilizers and food additives raises health concerns.
- Sensitive detection methods for nitrites in water are essential.
Purpose of the Study:
- To develop a highly sensitive electrochemical sensor for trace nitrite detection.
- To utilize a graphene/glassy carbon electrode (EGr/GC) for enhanced nitrite sensing.
- To validate the sensor's performance in real-world water samples.
Main Methods:
- Fabrication of a graphene-modified glassy carbon electrode (EGr/GC).
- Structural characterization of the graphene material (GO, FLG, MLG).
- Electrochemical detection of nitrite using square wave voltammetry (SWV) and amperometry (AMP).
Main Results:
- The EGr/GC electrode showed a three-order-of-magnitude higher response to nitrite than the bare electrode.
- Linear detection ranges were established for SWV (3 × 10-7 to 10-3 M) and AMP (3 × 10-7 to 4 × 10-4 M).
- A low limit of detection (LOD) of 9.9 × 10-8 M was achieved, with excellent stability and repeatability.
Conclusions:
- The developed EGr/GC sensor is effective for trace nitrite detection in water.
- The sensor exhibits superior performance compared to bare electrodes.
- The sensor demonstrates practical applicability and reliability for water quality monitoring.
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