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MSE-304: Surfaces and interfaces
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Lectures in this course (40)
Surface Electronic Description
Explores electronic charge density, space-charge buildup, work function, charge transfer, molecular orbital theory, absorption geometry, and absorption on solids.
Absorption at Interfaces
Explores absorption at interfaces, sustainable energy future, and catalyst poisoning.
Electronic Structure at Surfaces
Explores electronic properties of surfaces, absorption, charge transfer, and materials with high surface area.
Catalysis: Surface Absorption and Molecular Bonding
Explores absorption at interfaces, surface 'softness', catalysis, molecular bonding, and the importance of catalysis in sustainable energy.
Surface Contact Angle in Solvent Drops
Covers the concept of contact angle in solvent drops on solid surfaces.
Surface and Interfacial Energy: Lesson 2
Discusses surface energy, crystallographic planes, and excess free energy in materials.
Solid-Solid Interfaces: Grain Boundaries and Surface Energy
Explores grain boundaries, surface energy, geometry parameters, and micelle formation.
Surface Energy and Crystal Structures
Explores surface energy, crystal structures, interfacial phenomena, and grain boundaries.
Surfaces and Interfaces: Lesson 1
Covers the fundamentals of surfaces and interfaces in materials science.
Interfacial Phenomena: Size Effects and Phase Transitions
Explores how material size impacts phase transitions and crystal growth in material science.
Adsorption at Interfaces: Challenges and Isotherms
Explores challenges in defining interfaces and various isotherms used in adsorption studies.
Solid-Solid Interfaces: Lesson 8
Explores solid-solid interfaces, bond interactions, and elastic energy in homophase interfaces.
Grain Boundaries: Description and Construction
Covers the idealized description and construction of grain boundaries, including tilt and twist boundaries.
Grain Boundaries and Interfaces
Explores coherent and semi-coherent grain boundaries, displacement shift complete lattice, and misfit dislocations in materials science.
Grain Boundaries: Interfaces and Energetics
Explores grain boundaries, interfaces, and energetics in materials science.
Dislocations: Glide vs. Climb
Explores the mechanisms of glide and climb motion for dislocations and different types of interfaces in materials.
Surface Electronic Description: Work Function and Charge Transfer
Explores electronic charge distribution, work function, charge transfer, and bonding states.
Surface Absorption and Catalysis
Explores surface absorption, catalysis, and the importance of specific surfaces in chemical reactions and hydrogen economy.
Real Surfaces: Line Defects
Explores line defects in real surfaces and their influence on surface energy.
Interfaces: Thermodynamics and Applications
Explores the thermodynamics of interfaces, emphasizing the concept of work of addition and its applications in material science.
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