Breakthrough in enantioselective synthesis of chiral quinohelicenes using organocatalyzed Povarov reaction and oxidative aromatization
Discover how in-situ neutron diffraction reveals atomic-scale behavior of industrial catalysts under high-pressure conditions, enabling better catalyst design.
Exploring how carbon tetrachloride interacts differently with silver and silicon surfaces at atomic scale, revealed through advanced surface science techniques.
Explore how molecular dynamics simulations revolutionize our understanding of protein dynamics, from F1-ATPase rotation to drug discovery.
Discover how sulfonium cations have been transformed into powerful π-acidic ligands, revolutionizing chemical catalysis and challenging traditional phosphine-based systems.
Exploring the fluxionality of transition-metal oxide clusters and their revolutionary impact on catalyst design for clean energy applications.
Discover how hydroxyapatite, the mineral in bones, is revolutionizing VOC decomposition as a noble-metal-free catalyst.
Discover how solvents dramatically increase the enantiomerization barrier in 1-aza[5]helicene, unlocking new possibilities for chiral nanotechnology.
Exploring metal-encapsulating Si16 cage superatoms and their revolutionary potential in materials science.
How single-molecule reporters are revolutionizing our understanding of molecular behavior in mesoporous materials through advanced microscopy techniques.