Explores the fundamentals and advancements in organic electronic materials, covering topics like electron delocalization, charge transport, semiconductor preparation, and sustainable engineering.
Explores the fundamentals and applications of organic electronics, covering intramolecular electron delocalization, charge formation, challenges, and sustainability.
Discusses the importance of electromagnetic simulation in design technology and compares entrepreneurship approaches between Silicon Valley and Europe.
Explores the absorption of visible light by organic molecules and the generation of color, as well as the electronic excitation of molecules and the charge transport in organic devices.
Explores the integration of silicon membranes into deformable structures and the creation of neural implants with electronic components directly at the electrode array level.
Covers the history, trends, challenges, and applications of printed electronics, emphasizing large area manufacturing processes and flexible substrates.
Explores the fabrication and principles of printed humidity and temperature sensors, along with organic electrochemical transistors as versatile sensors.