Exploring how self-organizing polymers create revolutionary nanoparticles for medicine through spontaneous molecular assembly.
Discover how liquid-phase mineral precursors enable intrafibrillar mineralization of collagen to create superior biomaterials that mimic natural bone.
Explore how computational chemistry applications leverage the EGI distributed computing infrastructure to revolutionize molecular research and drug discovery.
Discover how scientists are revolutionizing PMMA recycling through pendent group activation, achieving 95% monomer recovery without solvents or catalysts.
Exploring how peptides, peptoids, and polymerization techniques are enabling revolutionary bioinspired materials with applications from medicine to electronics.
Explore the cutting-edge science of transdermal drug delivery systems, from nanocarriers to smart patches revolutionizing medicine.
Explore how polymers direct barium carbonate crystallization to form dynamic, self-organized structures at the intersection of chemistry and materials science.
Explore how fluorescent polymers are revolutionizing fields from medicine to environmental engineering through their unique light-emitting properties.
Exploring the groundbreaking Secondary Ion Mass Spectrometry (SIMS) technology and its applications in molecular imaging, as presented at SIMS XVIII in Riva del Garda
Discover how POS-PVA hybrid polymer discs are transforming medical diagnostics through superior biomolecule immobilization technology.