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Impedance Sensor for Real-Time Ammonium Detection Based on MWCNT/ZnO Nanocomposites

IEEE transactions on nanobioscience(2023)

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Abstract
This work reports on the development of an impedance sensor-based real-time-field specific system to monitor aqueous Ammonium (NH4+). The sensing element was fabricated by modifying screen-printed interdigitated electrodes (IDEs) with a hybrid nanocomposite of Multi-Wall Carbon Nanotube (MWCNT) with Zinc Oxide (ZnO) nanocrystals. The NH4+ of the water was monitored, and it exhibited a sensitivity of $67.13 \,\,\Omega $ /mM with average correlation coefficients of 0.80. The impedance magnitude ( $\Omega$ ) of the NH4+ sensor was unaffected by the presence of Fe2+, Ni2+, K+ and P+ interfering cations. The developed sensor was interfaced with an IoT-enabled NodeMCU microcontroller, enabling a direct method for continuous monitoring of NH4+ concentrations. This integrated system is interconnected to the field-deployed sensor nodes, which provide real-time NH4+ levels to the remote user through web applications.
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Key words
Zinc oxide,II-VI semiconductor materials,Impedance,Nanocomposites,Surface impedance,Electrodes,Surface morphology,Screen printing,MWCNT/ZnO,NH4+ sensor,IoT
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