Exploring recent advances in transition-metal catalysis for creating pharmaceuticals, advanced materials, and sustainable technologies.
Discover how hierarchically porous inorganic oxide materials with three-dimensionally interconnected networks are revolutionizing technology from energy storage to environmental cleanup.
Discover how scientists captured a pre-transition-state mimic of adenosine deaminase, revealing the molecular mechanisms of enzymatic catalysis and advancing our understanding of immune system function.
Exploring graphene-based single-atom catalysts, their stability, catalytic performance, and revolutionary potential in chemistry.
Explore the groundbreaking research presented at the 2013 Gordon Research Conference on Clusters, Nanocrystals & Nanostructures, where scientists gathered to unlock the potential of nanoscale materials.
Discover how aberration-corrected Environmental Transmission Electron Microscopy is transforming catalyst design by enabling atomic-scale observation of ceria-based catalysts in action.
Discover the breakthrough in magnetic memory technology with giant in-plane magnetic anisotropy in bcc Co/Fe bilayers
Exploring the evolutionary and psychological foundations of human cooperation through interdisciplinary research at the National Evolutionary Synthesis Center.
Explore the cutting-edge field of nanoscale chemical patterning where scientists use molecules and chemicals to create intricate patterns on graphite surfaces for next-generation technologies.
Explore the fascinating world of quantum phenomena in clusters and nanostructures, their unique properties, recent breakthroughs, and potential applications in future technologies.