Discover how Pyrene-1-carboxaldehyde hydrazone modified mesoporous silica foam enables efficient and accurate electroanalysis of copper in food samples.
How a dash of chemistry is turning simple metal into supersensors for everything from glucose to environmental toxins.
Discover how DNA aptamers are transforming electroanalysis and biosensing technology through molecular recognition and electrochemical detection.
Discover how sonoelectroanalysis uses ultrasound to detect copper in passivating media, overcoming traditional analytical limitations.
Explore the principles and applications of Pulse Voltammetry, a powerful electrochemical technique for sensitive detection and analysis.
Discover how a modified carbon nanotube sensor can simultaneously detect 6-Thioguanine, Uric Acid, and Folic Acid with unprecedented precision.
Explore how conducting polymers in microfluidic channels are creating revolutionary electroanalysis systems for chemical detection and sensing applications.
Discover how miniature acoustic resonators are revolutionizing lab-on-a-chip technology by enhancing chemical detection sensitivity through sound waves.
Explore how thermally responsive electroactive gels are transforming electroanalysis through switchable sensors, molecular computing, and biomedical applications.
Explore how surface and structural modifications are transforming carbon electrodes for advanced electroanalysis and electrochemical conversion applications.