Exploring how bio-based solvents derived from plants and waste are revolutionizing chemical manufacturing and replacing petrochemical foundations.
Explore how asymmetric catalysis and green chemistry principles are revolutionizing the synthesis of chiral multifunctional alcohols and organofluorine compounds for pharmaceutical applications.
Discover how modern hydroamination is transforming chemical synthesis using light, electricity, and solvated electrons to create complex molecules with atomic precision.
Exploring sulfonic acid functionalized ordered mesoporous materials as sustainable catalysts for fine chemical synthesis and green chemistry applications.
Discover how nickel-citric acid coordination polymers serve as efficient catalysts for multicomponent reactions in pharmaceutical synthesis, enabling greener chemistry.
Discover how immobilizing enzymes creates powerful heterogeneous-enzyme hybrid catalysts for sustainable chemistry and industrial applications.
Explore how cross-dehydrogenative coupling (CDC) is transforming pharmaceutical synthesis through sustainable chemistry approaches for creating fused imidazoheterocycles.
The story of room-temperature ionic liquids - from accidental discovery to green chemistry revolution
Revolutionary electrochemical method enables direct phenol-arene cross-coupling without precious metal catalysts, offering sustainable synthesis of biaryl compounds.
Discover how fluoride-free Lewis acidic melts are revolutionizing MXene synthesis, creating sustainable pathways for this revolutionary 2D material.