Exploring how MOFs act as molecular cages to protect enzymes while boosting their performance for sustainable biocatalysis.
Explore how FhuA protein evolved from iron transporter to versatile nanoscale scaffold through protein engineering
Exploring how biotechnology contributes to sustainable development through innovative solutions in agriculture, environmental remediation, and materials science.
Discover how applied biocatalysis is transforming chemistry through nature's enzymes, enabling sustainable industrial processes and precise molecular transformations.
Exploring how ionic liquids achieve extraordinary molecular discrimination through tunable selectivity and nanostructuring in green chemistry applications.
Exploring the revolutionary impact of bifunctional nanotechnology in medicine, energy, and environmental sustainability through cutting-edge research and applications.
Discover how ionic liquids and enzyme immobilization transform delicate BVMOs into robust, reusable biocatalysts for sustainable chemistry.
How biocatalysis and biomass conversion are enabling a waste-free circular economy through nature-inspired chemical processes.
Exploring how biocatalysis and engineered enzymes are transforming chemistry with sustainable solutions for pharmaceuticals, materials, and environmental challenges.
Exploring how enzymes recognize and manipulate planar chirality, with recent breakthroughs in synthetic applications.