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Lecture
IR Spectroscopy in Coordination Chemistry
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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.
Pi-Donor and P-Acceptor Ligands
Explores the impact of pi-donor and p-acceptor ligands on ligand field splitting diagrams and metal orbitals in coordination complexes.
Ligand Field Theory
Explores Ligand Field Theory, color theory, transition metal complexes, and protein stability.
Organometallic Chemistry: Fundamentals
Covers the fundamentals of organometallic chemistry, including ligand types, bonding, reactivity, and applications in catalysis and medicine.
Coordination Chemistry: Chapter 3
Delves into Chapter 3 of Coordination Chemistry, exploring spherical and planar geometries, ligand effects, and MO diagrams.
Transition Metal Complexes
Explains the 18 Valence Electron rule for stability in transition metal complexes and the common ligands' electron contributions.
Alkenes in Organometallic Chemistry
Explores alkene complexes, their bonding, synthesis methods, and nucleophilic attack rationalization in organometallic chemistry.
Metal Carbonyls: Bonding
Covers the bonding in metal carbonyls and the Mond process for nickel purification.
Coordination Chemistry: Ligand Interactions
Explores ligand interactions with metal ions in coordination chemistry.
SCR Mechanism: Experimental Set-up and Procedures
Explains the SCR mechanism and experimental set-up procedures for NH3 adsorption and NO desorption.