Discover how electronically coupled lactones are transforming molecular science through enhanced reactivity, stereochemical control, and energy transfer capabilities.
Discover how 3D holographic microscopy reveals the unique electrochemical behaviors of single nanoparticles, revolutionizing our understanding of nanodomains.
Exploring how single-atom catalysts are transforming hydrogen production through atomic-level precision and quantum efficiency.
How the synergy between non-thermal plasma and photocatalysts creates an efficient solution for VOC removal at room temperature with minimal energy.
Exploring how semiconducting oxides are poised to dethrone silicon with their unique properties enabling breakthroughs in electronics, energy, and computing.
Breakthrough in copper-catalyzed enantioselective B–H bond insertion reaction for chiral α-boryl phosphonates synthesis with pharmaceutical applications
Exploring how AAO pore geometry controls CNT packing density for next-generation nanotechnology applications
How surface-bound osmium clusters from University of Delaware are rewriting Fischer-Tropsch catalysis for sustainable fuel production.
Exploring how ionic liquids are revolutionizing catalysis with their unique properties and sustainable applications in pharmaceutical synthesis, energy, and industrial processes.
Discover how MIL-101(Cr) metal-organic framework revolutionizes fullerene separation with high precision and efficiency.