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Ligand field theory
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Coordination chemistry
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Related lectures (32)
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Coordination Chemistry: High Spin Complexes and Ligands
Explores high spin complexes and ligands in coordination chemistry, discussing their impact on metal ions' spin states and magnetic properties.
IR Spectroscopy in Coordination Chemistry
Explores the use of IR spectroscopy to analyze bonding in coordination complexes through CO stretching frequencies and metal-ligand interactions.
Metal Carbonyls: Bonding
Covers the bonding in metal carbonyls and the Mond process for nickel purification.
Experiment and Z-Plot: Introduction to Part II
Covers acid-base titration, ligand concentration, pH calculation, and Z-plot analysis.
Metal Complex Stability
Explores the entropic effects and microscopic ligands in determining the stability of metal complexes.
Metathesis: Catalyst Reactivity and Initiation Rate
Explores catalyst reactivity in metathesis reactions, emphasizing initiation rates and ligand effects.
Chemical Reactions and Ligands
Discusses oxidation reactions, ligand complexes, equilibrium reactions, and electronic configurations in chemical complexes.
Quantum Chemistry
Covers topics related to Quantum Chemistry, including bond orders and molecular structures.
Ligand-Receptor Interactions: Mechanisms and Quantification
Covers ligand-receptor interactions, their mechanisms, and how to quantify binding affinities in biological systems.
Stability of Complexes
Explores the concept of 18 valence electrons and the stability of metal-ligand complexes.
Metal speciation: EDTA complexes
Explores metal-EDTA complexes, Zn(II) speciation, hydrolysis of metal ions, and iron(III) species distribution.
Infrared Spectroscopy in Bonding: Carbonyl Compounds
Explores Infrared Spectroscopy in bonding with a focus on carbonyl compounds and discusses the factors influencing the color of transition metal complexes.
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