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Lecture
Powder Characterisation: Techniques and Protocols
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Related lectures (31)
Catalyst Characterization I
Introduces catalyst characterization techniques and challenges in measuring metal surface area accurately.
Heterogeneous Catalysis: Introduction and Surface Reactivity
Introduces the basics of heterogeneous catalysis, focusing on catalyst types, surface reactivity, and the role of surface energy in catalytic processes.
Adsorption at Gas/Solid Interface
Covers adsorption at gas/solid interface, including physisorption, chemisorption, and Xenon atom manipulation using STM.
Adsorption and Chemisorption
Explores chemisorption, catalysis, and adsorption on solid surfaces, including energy differences and bond formation.
Ceramics: Powder Characterization
Explores the characterization of powders in ceramics, emphasizing the impact on ceramic properties and the manufacturing process.
Particle Size Characterisation
Covers the characterisation of particle size in powders, focusing on techniques such as laser diffraction and sedimentation.
Surface characterization: physical aspects
Explores surface morphology, topography, and specific surface area using advanced techniques for material characterization.
Adsorption at Gas/Solid Interface
Explores adsorption at the gas/solid interface, focusing on molecular beam techniques and chemisorption processes.
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Surface Phenomena: Adsorption, Isotherms & Tension
Explores adsorption, isotherms, and surface tension phenomena in nanoscale materials.
Heterogeneous Catalysis: Introduction
Introduces heterogeneous catalysis, discussing catalysts' tolerance to extreme conditions and the reorganization of crystals on the surface.
Heterogeneous Catalysis: Adsorption & Kinetics
Explores adsorption mechanisms, elementary kinetics, active sites, and transport effects in heterogeneous catalysis.
Adsorption at the Gas/Solid Interface
Covers Langmuir, Fowler-Guggenheim, and BET adsorption isotherms, capillary condensation, and chemisorption concepts.
Electronic Structure at Surfaces
Explores electronic properties of surfaces, absorption, charge transfer, and materials with high surface area.
Particle Size Characterisation: Methods & Applications
Explores methods for particle size characterisation and surface area analysis, including laser diffraction and gas adsorption.
Soil Sciences: Porosity and Water Interactions
Explores porosity in rocks, water retention, and soil-water interactions.
Microscopic Analyses & Electron Sources
Covers microscopic analyses using optical and electron microscopy, as well as electron sources.
TEM Lenses: Condenser, Objective, and Projector
Explores the roles of condenser, objective, and projector lenses in a TEM.
Interfacial Chemistry: Surface Tension, Adsorption, Electrokinetics
Covers surface tension, adsorption, and electrokinetics, including gas/liquid interface, Langmuir isotherm, and electro-osmosis.
Dynamical Scattering: Bend Contours
Explains the dynamical scattering effect of bend contours in TEM images of crystalline samples.
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