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Transport & Recombination
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Related lectures (32)
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Understanding Semiconductor Equilibrium: Concepts and Applications
Discusses semiconductor physics, focusing on equilibrium states and energy band structures in homogeneous and inhomogeneous semiconductors.
Solar Cells: Energy Generation and Efficiency
Covers the history and physics of solar cells, emphasizing their efficiency metrics and operation under different conditions.
Doping in Semiconductors: Energy Band Models
Covers the impact of doping on semiconductor properties and energy levels.
Intermolecular Charge Delocalization in Organic Materials
Explores intermolecular charge delocalization in organic materials and the behavior of organic semiconductors.
Carrier Concentration: Extrinsic Semiconductors Overview
Covers the influence of doping on carrier concentrations in extrinsic semiconductors and the resulting shifts in the Fermi energy level.
Charges at Interfaces: Fermi-Dirac Distribution and Density of States
Explores Fermi-Dirac distribution, density of states, charge injection in semiconductors, and electrode materials.
Photovoltaics
Covers the principles of photovoltaics, including the absorption process, bandgap importance, and electron-hole pair separation.
Transport & Recombination
Explores transport, recombination, dark conductivity, and photoconductivity in electronic materials, emphasizing the significance of recombination mechanisms in semiconductors.
Fermi Distribution and DOS
Explores Fermi distribution, DOS, Fermi level in materials, charge injection mechanisms.
Charge Carriers in Organic Semiconductors
Explores the formation of polarons, excitons, chemical doping effects, and charge carrier behavior in organic semiconductors.