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Lecture
Electronic Transport in Semiconductors
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Fermi Level and Carrier Concentration in Semiconductors
Explores electron concentration in semiconductors at room temperature and the Fermi level variations with doping levels and temperature.
Semiconductor Devices II: Defects Engineering
Covers the analysis of measurements and defects engineering in semiconductor devices, including density of states and defect probing.
Intramolecular Electron Delocalization
Explores intramolecular electron delocalization in organic electronics, covering history, challenges, charge transport, device preparation, and advanced topics.
Semiconductor Physics: Carrier Transport and Recombination
Explores semiconductor physics under high electric fields, discussing carrier transport, recombination processes, and the impact of injection.
Charge Carriers in Organic Electronics: Solitons and Polarons
Discusses charge carriers in organic materials, focusing on solitons, polarons, and their implications for charge transport and device performance.
Semiconductor Detectors
Explores the principles and operation of semiconductor detectors for radiation detection.
Semiconductors: Equilibrium Properties and Charge Dynamics
Covers the equilibrium properties of semiconductors, focusing on charge dynamics and the influence of temperature on electron-hole generation.
Semiconductors: Band Structure and Carrier Concentration
Explains band structure, density of states, Fermi distribution, and carrier densities.
Semiconductor Band Structure
Explores the bandgap in semiconductors, focusing on the interaction between atoms in a crystal and the derivation of the secular equation.
Understanding Semiconductor Behavior: Charge and Conductivity
Covers semiconductor behavior, focusing on energy levels, charge distributions, and conductivity in N-P-N structures and metal-semiconductor interfaces.