Explore the revolutionary technique of functional group transposition using palladium and photoredox dual catalysis for molecular editing.
Explore how data science and AI are transforming organic chemistry, enabling real-time reaction analysis and predictive modeling of chemical processes.
Discover how chemists are mastering molecular shape through systematic study of cyclopropyl ketones and their stereoselective reduction.
How the marriage of lab experiments and digital calculation is revolutionizing the creation of new matter in modern chemistry.
Explore Eric N. Jacobsen's Arthur C. Cope Award-winning research on noncovalent catalysis and its transformative impact on chemical synthesis.
Explore how synthetic organic chemists control molecular behavior through coordination chemistry, substituent effects, and element substitution to create new materials.
Explore the powerful technique of tandem vicinal difunctionalization in organic chemistry - adding two functional groups to adjacent carbon atoms in a single process.
Exploring the 1997 RSC Award in Synthetic Organic Chemistry, its recipient P. Anthony G. M. Barrett, and the scientific context of this prestigious honor.
Discover how selective sp3 C–H alkylation via polarity-match-based cross-coupling is revolutionizing drug discovery and molecular design.
How a simple, four-step chemical recipe is revolutionizing how we teach and discover new medicines using only teaching lab equipment.