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Related lectures (32)
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Organic Electronics: Electronic Perturbations and Semiconductor Devices
Explores challenges and advancements in organic electronics, covering transport, semiconductor devices, and quantum harmonic oscillators.
Simulation of 2D Field Effect Transistors
Covers the simulation of 2D Field Effect Transistors and the advantages of using Green's Function.
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.
Contact Resistance: Theory and Measurements
Explores contact resistance in semiconductor devices, including Moore's Law, FET characteristics, quantum limits, and measurement techniques.
Unified View of Charge Transport in Organic Semiconductors
Provides a unified understanding of charge transport mechanisms in organic semiconductors using the generalized Einstein relation.
Contacts: Semiconductor Devices II
Explores semiconductor devices historical development, contact resistance, FET characteristics, quantum limit, 2D materials contacts, and charge-injection mechanisms.
Introduction to 2D Materials
Introduces 2D materials, FETs, optoelectronics, post-CMOS concepts, and the historical impact of Moore's Law on semiconductor devices.
Density of States in Semiconductor Devices
Explores density of states in semiconductor devices, covering electron gas, energy bands, Fermi-Dirac distribution, and band structures.
Organic Thin Film Transistors
Introduces organic thin-film transistors (TFTs) and explores their benefits and limitations.
MOSFET Structure and Operation: Qualitative Analysis
Describes the qualitative behavior of MOSFET transistors, focusing on their structure and operational principles.