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Lecture
Graphene: Quantum Properties and Nanoribbons
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Quantum Mechanics: Free Carrier Concentration and Maxwell Distribution
Discusses quantum mechanics principles, focusing on free carrier concentration and Maxwell distribution in metals and gases.
Van der Waals Materials: Properties and Applications
Explores the programmable nature of van der Waals materials and their unique properties, including twistronics and quantum transport.
Semiconductor Physics: Fundamentals and Applications
Delves into the physics of semiconductors, exploring their properties and applications in electronics and optoelectronics.
2D Electronic Devices and Materials
Explores 2D electronic devices and materials, including graphene, transition metal dichalcogenides, excitons, and valleytronics.
Chemistry of Carbon Allotropes
Explores the chemistry of various carbon allotropes, discussing their unique properties and applications.
Photoconductors: Examples and Applications
Covers various photoconductors, their characteristics, applications, and the trade-offs between speed and gain in infrared detection.
Charge Formation and Delocalization: Solitons, Polarons, and Interfaces
Explores charge carriers in organic semiconductors, including solitons, polarons, and band transport regimes.
Engineering Carbon Nanostructures
Explores the engineering of intrinsic π-electron magnetism in carbon nanostructures, focusing on inducing magnetism in graphene and nanographenes through sublattice imbalance and topological frustration.
Excitons, Luminescence and LEDs
Explores excitons, luminescence, and LEDs, including their formation, impact on carrier density, and working principles.
N-doped Graphene Membrane: Proton Exchange & Fuel Cells
Explores N-doped graphene membranes for proton exchange in fuel cells, focusing on performance and fabrication.