Exploring how a single dangling bond - an atom missing one bonding partner - is being reimagined as the ultimate quantum component for future electronics.
Explore the fascinating fluxional dynamics of terpyridine ligands in ruthenium complexes and their potential applications in materials science, energy, and medicine.
Exploring the adsorption behavior and mechanism of tripolyphosphate on synthetic goethite and its implications for plant nutrition and environmental protection.
Explore the scientific investigation of thermal degradation in vegetable oils using spectroscopic methods and mathematical analysis.
Discover how scientists created PrRh4.8B2 single crystals using the molten metal flux method with copper as solvent, revealing extraordinary material properties.
Exploring how carotenoids from nature inspire more robust artificial photosynthetic systems for solar energy technology.
Discover how mechanochemical synthesis creates 5-FC/5-FU cocrystals for improved cancer drug delivery and stability.
Explore how microwave spectroscopy uncovers the delicate interactions between rare gas atoms and molecules through van der Waals complexes.
Discover how single-atom tin-loaded titanate catalysts are revolutionizing hydrogen production through enhanced photocatalytic activity and sustainable materials.
Discover how near-infrared spectroscopy and multivariate calibration revolutionized pharmaceutical analysis of magnesium stearate hydrates.