Exploring the revolutionary potential of anionic transition metal complexes with tetraaza protonated macrocycles in medicine, catalysis, and nanotechnology.
Exploring the revolutionary potential of mechanically interlocked materials (MIMs) like rotaxanes and catenanes in medicine, nanotechnology, and smart materials.
Exploring how chiral nanostructures on surfaces enable enantioselective separation of molecules with potential applications in pharmaceuticals and materials science.
Discover how bimetallic radical redox-relay catalysis revolutionizes the synthesis of allylic alcohols from epoxides through an elegant electron dance between titanium and cobalt.
Discover how hypervalent iodine enables efficient synthesis of valuable sulfinamidine drug building blocks from sulfenamides through gentle oxidation.
Exploring the synthesis of nitrogen-rich heterocycles with therapeutic potential through advanced chemical methods.
Exploring innovative synthesis of 3,5-disubstituted pyrazoline hybrids with heterocyclic systems for advanced drug development using microwave-assisted techniques.
Exploring how fentanyl's metabolites, particularly 3-hydroxy derivatives, influence its potency, detection, and overdose reversal.
How microwave technology is revolutionizing carbohydrate conversion for sustainable chemical production
Exploring the dynamic world of multiphase catalysts that drive modern industrial chemistry through adaptive behavior and atomic-scale precision.