Discover how scientists are using cow urine to create palladium nanoparticles with extraordinary medical and environmental applications through green synthesis.
Explore how nanoparticle systems are revolutionizing sensing and biomedical applications through unique optical properties and targeted functionalization.
Explore how green-synthesized copper, zinc, and titanium oxide nanoparticles combat drug-resistant pathogens and environmental pollution through sustainable nanotechnology.
Explore how zinc oxide nanoparticles are transforming medicine, environmental cleanup, and technology through green synthesis methods and innovative applications.
Explore how nanoparticles are enhancing biological transistor amplifier circuits for advanced biosensing applications in medical diagnostics and health monitoring.
Explore how advanced X-ray techniques reveal the extraordinary structures and behaviors of natural nanoparticles that shape our planet's environmental processes.
Discover how amorphous nanoparticles transform into complex mineral structures through non-classical crystallization pathways in nature and laboratory settings.
Exploring the potential of D. malabarica assisted zinc oxide and silver nanoparticles against sheath blight disease caused by Rhizoctonia solani in rice crops.
Discover how nanoparticle shape influences catalytic performance in Suzuki-Miyaura cross-coupling reactions and other chemical processes.
Discover how phytomediated synthesis uses plants to create cerium oxide nanoparticles for medicine, environmental science, and beyond.