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Related lectures (26)
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X-ray Absorption Spectroscopy: Transitions and Applications
Explores X-ray Absorption Near-Edge Spectroscopy transitions and applications in tackling diesel emissions and optimizing catalytic converters.
Pair Correlation Function: Definition and Calculation
Explores the pair correlation function, its calculation method, and relation with the structure factor.
Metal Alloys: Structure and Properties
Explores the structure of metal alloys, coordination of atoms, phases at different temperatures, and the arrangement of atoms in nanocrystals.
Coordination Chemistry: Chapter 3
Delves into Chapter 3 of Coordination Chemistry, exploring spherical and planar geometries, ligand effects, and MO diagrams.
Splitting Diagrams: Crystal Field Stabilization Energy
Explains splitting diagrams and Crystal Field Stabilization Energy calculations for transition metal complexes.
Catalytic Asymmetric Reactions in Organic Chemistry
Explores catalytic asymmetric reactions in organic chemistry, covering principles, reactions, and ligands, bridging classics and current research.
Coordination Chemistry: Ligands and Geometries
Covers coordination numbers, common ligands, and preferred geometries in coordination chemistry, emphasizing the spatial distribution between ligands and the role of d⁸ electron configurations.
X-ray Absorption Spectroscopies
Explores X-ray absorption spectroscopies, including XANES and EXAFS, and their applications in catalysis, biochemistry, and environmental sciences.
Ligand Field Theory: Octahedral Coordination Complexes
Covers ligand field theory for octahedral coordination complexes with pure sigma donors.
Stability of Complexes
Explores the concept of 18 valence electrons and the stability of metal-ligand complexes.
Modeling Class: Vesta Software Visualization
Explores crystal structure visualization using Vesta software for CCP and HCP arrangements.
Introduction to Materials Science
Introduces materials science, covering crystal structures, metal alloys, defects in crystals, and ceramics.
Oxidative Addition and Reductive Elimination
Explores oxidative addition, reductive elimination, insertion reactions, and factors influencing these reactions in organometallic chemistry.
Coordination Chemistry: Basics
Covers the basics of coordination chemistry, including metal complex formation and ligand effects.
Coordination Chemistry: Transition Metals
Explores coordination chemistry principles with a focus on transition metals and their electronic configurations.
Spectroscopy and chemical kinetics
Explores spectroscopic techniques in biology and chemical kinetics, including reaction mechanisms and coordination chemistry.
Coordination Chemistry: Ligand Interactions
Explores ligand interactions with metal ions in coordination chemistry.
Phosphine Dissociation Mechanisms
Delves into olefin coordination mechanisms, phosphine dissociation, ligand effects, and catalyst reactivity.
Organometallic Reactions
Covers main organometallic reactions and factors driving them, with exercises predicting reaction products.
Optical Properties: Coordination Complexes
Explores the optical properties of coordination complexes and their color influences on materials through absorption and emission phenomena.
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