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Lecture
Defects in 2D Materials
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Defects in 2D Materials
Explores common defects in 2D materials, their impact on device performance, and strategies for defect healing and positive applications.
Defects in Electronic Materials
Delves into the impact of defects in electronic materials, exploring band tails, XPS analysis, and defect creation mechanisms.
Semiconductor Devices II: Defects Engineering
Covers the analysis of measurements and defects engineering in semiconductor devices, including density of states and defect probing.
Defects in 2D Materials
Delves into common defects in 2D materials, their impact on transistor characteristics, formation energy, transport behavior, and van der Waals epitaxy.
Anelasticity and Mechanical Spectroscopy
Explores anelasticity, defects, thermodynamics, internal energy, dislocations, and mechanical spectroscopy.
Real Surfaces: Defects and Reconstructions
Explores the difference between ideal and real surfaces, defects, and surface reconstructions.
Semiconductor Devices II: Contact Resistance Modeling
Explores contact resistance modeling in semiconductor devices, focusing on gate voltage calculation and defect analysis.
Simulation of 2D Field Effect Transistors
Covers the simulation of 2D Field Effect Transistors and the advantages of using Green's Function.
Defects in Materials: Structure and Behavior
Explores defects in materials, grain boundaries, grain coarsening kinetics, the glass transition, and vacancy creation.
Weak Bond Model: Electronic Materials
Introduces the weak bond model for electronic materials, focusing on molecular orbitals and defect formation.