This electrochemical sensor uses RGO/NiWO₄ electrodes to detect Fe, Zn, and Se in biofluids, enabling noninvasive health monitoring. It offers sensitive, selective, and simultaneous detection, with applications in disease and nutrient imbalance assessment.
The proposed electrochemical sensor technology focuses on detecting trace metals such as iron (Fe), selenium (Se), and zinc (Zn) in biological fluids, including blood, saliva, tears, and exhaled breath condensate (EBC). Utilizing reduced graphene oxide (RGO) and nickel tungstate (NiWO₄) electrodes, the sensor provides a noninvasive approach to health monitoring by assessing disease and nutrient imbalances. This system is designed to offer sensitive, selective, and simultaneous detection of these essential trace metals, supporting rapid, real-time analysis on-site.
Key features:
This technology is currently at a Technology Readiness Level (TRL) of 3, indicating that it has been demonstrated in analytical and laboratory settings. Future validation steps involve optimizing nanocomposite synthesis, performing extensive biofluid testing, and integrating the system into a portable, user-friendly format for field deployment.