Explore how scientists are chemically engineering quantum dot interfaces to control charge transfer and trapping for next-gen displays and solar cells.
Explore how peptide-substituted perylene-bisimides combine biological precision with electronic excellence to create self-assembling nanomaterials with revolutionary applications.
Discover how redox chemistry drives the self-assembly of mixed metal polyoxometalates, creating nanoscale machines for future technology.
Exploring the revolutionary field of synthetic supramolecular chemistry and its applications in medicine, materials science, and sustainable technologies.
Exploring how engineered voids in supramolecular materials enable breakthroughs in energy storage, medicine, and environmental solutions.
Exploring how metal-organic frameworks (MOFs) are transforming energy-intensive gas separation processes through molecular precision engineering.
Exploring the revolutionary potential of anionic transition metal complexes with tetraaza protonated macrocycles in medicine, catalysis, and nanotechnology.
Exploring the revolutionary world of molecular switches and cages that are transforming medicine, computing, and materials science at the nanoscale.