Exploring the synthesis, characterization, and revolutionary applications of anionic transition metal complexes with tetraaza protonated macrocycles in medicine and materials science.
Exploring the chemical physics behind metalloenzymes and their redox catalysis capabilities that inspire sustainable technology
Exploring how iron and nickel macrocyclic complexes revolutionize antimicrobial treatments and renewable energy solutions through advanced chemistry.
Exploring how correlative electron and synchrotron X-ray microscopy unlocks atomic secrets of advanced materials, from jet engines to human teeth.
Discover the palladium-catalyzed synthesis of 9,9-disubstituted fluorenes from 2-iodobiphenyls and α-diazoesters - a breakthrough in molecular construction.
Exploring how the KANRS motif in KDO8PS enzyme controls bacterial survival through substrate selection and catalysis, offering new antibiotic targets.
Exploring the groundbreaking potential of gold-phosphorus carbon nanocomposites in technology, energy, and medicine.
Exploring how modern chemical catalysis combines scientific discovery with practical applications to revolutionize industries and create sustainable solutions.
Exploring the quantum observer effect and how measurement changes reality at fundamental levels through the double-slit experiment
Exploring how self-replicating molecules spontaneously develop catalytic abilities, solving key puzzles in the origin of life.