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  • Synergistic enhancement of ...
    Guerrero-Esteban, Tamara; Sánchez, Borja L.; Expósito, Lucía; Rodríguez-San-Miguel, David; Zamora, Félix; Pariente, Félix; Gutiérrez-Sánchez, Cristina; Lorenzo, Encarnación

    Sensors and actuators. B, Chemical, 12/2023, Letnik: 396
    Journal Article

    This work presents a novel approach for detecting biogenic amine tyramine using a sensitive and disposable electrochemiluminescent sensor. The sensor is fabricated by modifying a screen-printed carbon electrode surface with two nanomaterials, α-Ge nanolayers and AuNP, which synergistically enhance the electrochemiluminescence response. The sensor was characterized using various techniques such as SEM-EDX, EIS, Raman, and AFM. The principle of the biosensor relays on the fact that tyramine molecule acts as an analyte and co-reactant, which interacts with the luminophore Ru(bpy)32+ on the sensor surface. The proposed sensor shows a linear response to tyramine concentration, with a detection limit of 2.28 µM. The sensor successfully detected tyramine in avocado samples, demonstrating its potential for practical applications. Display omitted •Tyramine electrochemiluminescent-sensor.•α-Ge and AuNP enhance the electrochemiluminescence.•Tyramine as analyte and co-reactant simultaneously.