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Lecture
Introduction to Organic and Printed Electronics
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Related lectures (32)
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Organic Thin Film Transistors
Explores Organic Thin Film Transistors, covering characteristics, mobility, stress impact, ambipolar transport, and design challenges.
Organic Solar Cells: Fundamentals and Applications
Explores the fundamentals and applications of organic solar cells, including excitons, bulk heterojunction, cell efficiency, and processing methods.
Organic Thin Film Transistors
Introduces organic thin-film transistors (TFTs) and explores their benefits and limitations.
Organic Electronics: Electron Delocalization
Explores electron delocalization in organic materials, covering pi-interactions, resonance structures, and packing patterns of conjugated systems.
Organic Electronic Materials: Field-Effect Transistors
Explores organic electronic materials, focusing on organic field-effect transistors (OFETs) and their operation, characterization, and real-world applications.
Polymerization Mechanisms and Thin Film Deposition
Explores polymerization mechanisms, synthesis methods, and thin film deposition in organic electronics.
Sustainable Electronics: Green Materials & Processes
Explores the potential of organic and printed electronics for greener electronics, focusing on sustainable materials and processes.
Charge Transport in Organic Materials: Band and Polaronic Transport
Explores charge transport in organic materials, emphasizing band and polaronic transport, criteria for band transport, and transient localization.
Charge Transport in Organic Semiconductors: Mechanisms and Interfaces
Covers charge transport mechanisms in organic semiconductors, focusing on active regions, interfaces, and the influence of disorder on conductivity.
Large Area Manufacturing: Inks and Substrates
Explores materials, inks, curing processes, substrates, and transistor fabrication for large area manufacturing.