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Updated: Jun 19, 2026

Assessment of Boron Doped Diamond Electrode Quality and Application to In Situ Modification of Local pH by Water Electrolysis
Published on: January 6, 2016
Nitrogen-doped bismuth molybdenum carbide: A superior heterojunction catalyst for electrochemical nitrite sensing in
Maroua Saadaoui1, Abdul Hakeem Anwer1, Assem T Mohamed1
1Gas Processing Center, College of Engineering, Qatar University, P. O. Box 2713, Doha, Qatar.
Abstract:
In this work, we developed a high-performance electrochemical sensor for sensitive and selective detection of nitrite in environmental and food samples, utilizing bismuth-modified nitrogen-doped molybdenum carbide nanocomposites (Bi@N-Mo₂C) as the active material The nanocomposite was synthesized through a two-step process involving the formation of Bi@PD-Mo hollow spheres via self-assembly polymerization, followed by thermal carbonization to yield Bi@N-Mo₂C. The resulting material was immobilized on a glassy carbon electrode, enhancing electrochemical activity, as confirmed by Cyclic voltammetry and differential pulse voltammetry through its excellent sensitivity, reproducibility, and long-term stability. Sensor exhibited a broad linear detection range (14.9 μM-3.8 mM) and an ultralow detection limit of 0.13 μM. Its practical applicability was demonstrated by successful nitrite detection in real samples including milk, apple juice, and tap-water. The sensor also showed high selectivity and robustness in complex environments, indicating its potential as a reliable platform for food safety and environmental monitoring.
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