Discover how a new efficient synthesis method for 2,4,5-trisubstituted and 1,2,4,5-tetrasubstituted-1H-imidazoles is revolutionizing drug discovery.
Discover how C–H functionalization is revolutionizing drug discovery by enabling precise molecular modifications that accelerate medicine development.
Discover how titanium-catalyzed cyclopropanation is revolutionizing drug discovery through precise molecular sculpting of cyclopropane rings.
Explore how DNA-encoded combinatorial chemical libraries are transforming drug discovery by enabling screening of billions of compounds simultaneously.
Explore how scientists synthesize C-2-substituted benzothiazoles, versatile molecules with promising biological activities including anti-cancer properties.
Discover how calix[4]arenes, bowl-shaped molecules, are transforming pharmaceutical synthesis through precise catalysis of oxygen- and nitrogen-containing rings.
Explore the fascinating world of indole alkaloids - nature's complex medicines that form the backbone of treatments for cancer, hypertension, and malaria.
Discover how I(I)/I(III) catalysis is revolutionizing drug design by creating chiral fluorinated isosteres, expanding organofluorine chemical space for next-generation medicines.
Explore how chiral Brønsted acid catalysis is transforming drug discovery by enabling precise synthesis of single-enantiomer pharmaceuticals.
Discover how sustainable thioamide synthesis is revolutionizing drug discovery for diseases like tuberculosis and COVID-19 through green chemistry approaches.