Electrochemical examination of oxidized multiwalled carbon nanotubes interaction with coronene on graphite surfaces for advanced electrode applications.
Explore how chemically modified carbon nanotubes are transforming electroanalysis with enhanced sensitivity for detecting diseases, pollutants, and biomarkers.
Discover how carbon nanotubes can be grown directly on stainless steel without external catalysts, revolutionizing nanotechnology integration.
Explore how carbon nanotubes combined with metalloporphyrins and metallophthalocyanines create advanced chemical sensors for environmental monitoring and medical diagnostics.
Explore how carbon nanotube-based flow-through electrochemical cells are transforming chemical detection with unprecedented sensitivity and applications in environmental monitoring and healthcare.
Exploring how acid functionalization of multi-walled carbon nanotubes impacts their electrochemical sensor performance, with surprising findings challenging conventional wisdom.
Explore how carbon nanotube electrodes are transforming electroanalysis with unprecedented sensitivity and applications in biomedical interfaces and environmental monitoring.
How microscopic architectures of carbon are revolutionizing our ability to detect diseases and pollutants with unprecedented precision.
Explore how carbon nanotube-based electrochemical sensors are transforming epinephrine detection with unprecedented accuracy and sensitivity for medical diagnostics.
Discover how nanographite impurities in carbon nanotubes affect electroanalysis results and impact scientific research across various fields.