Explores the evolution and applications of Metal-Free Atom Transfer Radical Polymerization, highlighting the advantages of light-mediated polymerization and the challenges in achieving precise control over polymer synthesis.
Covers the general aspects of polymer materials, the 'Big 5' technical polymers, spider silk nanostructure, synthetic polymers, major application segments of plastics, and the activities of the Polymer Science department at EPFL.
Explores the basics of polymer synthesis, focusing on controlling molecular weight through reaction parameters and strategies like stoichiometry and chain stoppers.
Explores the thermodynamics of polymer blends, phase diagrams, miscible blends, phase segregation, block copolymers, and applications in thermoplastic elastomers and nanotechnology.
Explores the glassy state in polymers, the glass transition temperature, and factors impacting Tg, providing insights into polymer interactions and Tg determination.
Explores the development of biological models with integrated monitoring, focusing on cell membranes, conducting polymer scaffolds, and bioelectronic devices.
Explores viscoelasticity in polymer materials, emphasizing time-dependent behavior and transitions in properties, and discusses Dynamic Mechanical Analysis.