Explore how a new titanium compound with N,2-dihydroxybenzamide could revolutionize medicine and materials science through advanced molecular chemistry.
Discover the neuroscience behind why change is difficult and learn proven strategies to successfully implement personal and organizational transformation.
Explore how CMOS-compatible membrane projection lithography is revolutionizing semiconductor manufacturing and enabling the next generation of computational power.
Discover how plutonium and americium particles are defying scientific predictions by traveling through subsurface environments via colloid-facilitated transport.
Discover how Tetrahydrofuran-derived electrolytes enable lithium-metal batteries to operate efficiently at ultra-low temperatures down to -80°C.
Discover how air-stable, highly luminescent 2D tin halide perovskite nanocrystals are paving the way for environmentally friendly optoelectronics.
Explore how carboxylic acid geometry transforms copper complexes' properties - from color and magnetism to real-world applications in catalysis and medicine.
Discover how scientists predict single atom movement in tin dioxide to create better materials for sensors, electronics, and solar cells.
Discover how soft X-ray microscopy is revolutionizing our understanding of zeolite catalysts by revealing aluminum coordination environments at the nanoscale.
Explore how Inorganic and Analytical Chemistry experiments are being transformed from cookbook procedures to inquiry-based learning experiences.