Discover how silicene, a nanomaterial thinner than DNA, transforms CO2 into valuable fuels and chemicals through layer-controlled catalysis.
Explore the fascinating world of zeolites - microporous aluminosilicate minerals revolutionizing chemistry, industry, and energy storage through molecular sieving and catalytic properties.
Discover how scientists solved the century-old mystery of proton locations in Keggin heteropolyacids using advanced NMR techniques and computational chemistry.
Explore how Density Functional Theory revolutionizes catalyst design through computational chemistry and quantum mechanics.
Discover how ZSM-5 zeolites catalyze methanol-to-olefins conversion through the alkene hydrocarbon pool cycle, reducing dependence on fossil fuels.
Exploring the critical role of surface science in materials research and the urgent need for new analytical techniques to study atomic-level interfaces.
Explore the fascinating world of supported metal nanoparticles and their dynamic structural behavior that's revolutionizing catalysis and clean energy technologies.
Exploring how engineered 2D TMDs are revolutionizing hydrogen production through advanced electrocatalysis for the hydrogen evolution reaction.
Exploring how Pd, Au and AuPd core-shell nanoparticle catalysts are transforming chemical manufacturing through green oxidation processes.