Discover how titanium oxycarbide is revolutionizing fuel cell technology by enhancing ethanol oxidation efficiency through advanced nano-scaffold structures.
Explore how microstructure tomography reveals hidden material architectures from micro to atomic scales, transforming materials science and engineering.
Explore the 2015 Donald R. Ulrich Award, recognizing Dr. Go Kawamura's groundbreaking work in sol-gel science and materials innovation.
Explore the science behind boiler water treatment and how it eliminates corrosion and scale in industrial systems through chemical engineering and advanced monitoring.
Explore how electro-synthesis with heterogeneous catalysis is transforming chemical manufacturing through sustainable, electricity-driven processes.
Explore how antimony and tellurium phase-change materials enable faster, more efficient data storage through atomic-level structural transformations.
Discover how carbazole, an unassuming nitrogen-containing heterocyclic molecule, is revolutionizing fields from materials science to medicine with applications in OLED displays, solar energy, and climate change solutions.
Explore the revolutionary field of electroactive materials that respond to electrical stimuli, transforming energy storage, medical implants, and materials science through cutting-edge research and AI-driven discovery.
Explore how hydrogel technologies are transforming brain imaging and diagnostics, bringing into focus details that were once far beyond our visual reach.
How ACS Green Chemistry Institute grants are transforming pharmaceutical manufacturing through sustainable practices and innovative research.