Exploring the groundbreaking discoveries from the 1987 Solvay Conference on Surface Science that revolutionized nanotechnology and materials science.
Exploring how energy behaves at the vanishingly thin interface where solids meet liquids, revealing secrets crucial for next-gen technologies.
Breakthrough in green chemistry: Copper-catalyzed direct coupling of challenging SF4-alkynes with biologically important tetrahydroisoquinolines using oxygen as oxidant.
Exploring how adsorption energy measurement powers catalysis and shapes our technological future through quantum mechanics and surface science.
Exploring the biochemical properties and industrial applications of Monascus purpureus beta-glucosidase enzyme
Breakthrough in green chemistry: Ultrasonic synthesis of catenated nanocellulose for efficient vitamin C delivery using Preyssler acid catalyst.
Exploring how nanozymes - artificial enzymes engineered from nanomaterials - are transforming biotechnology and medicine.
Explore the crucial blueprint phase of chemical engineering where molecules become industrial processes through Solution Conceptual Design (SCD).
Exploring how catalysis and surface/interface chemistry are driving China's green energy revolution through atomic-scale engineering.
Exploring proton solvation and transport through computer simulations revealing the Grotthuss mechanism in water and biological systems.