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Coordination Chemistry: Ligands and Geometries
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Related lectures (33)
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.
Stability of Complexes
Explores the concept of 18 valence electrons and the stability of metal-ligand complexes.
Coordination Chemistry: Chapter 3
Delves into Chapter 3 of Coordination Chemistry, exploring spherical and planar geometries, ligand effects, and MO diagrams.
Coordination Chemistry: Ligand Interactions
Explores ligand interactions with metal ions in coordination chemistry.
Transition Metal Complexes
Explains the 18 Valence Electron rule for stability in transition metal complexes and the common ligands' electron contributions.
Coordination Chemistry: Transition Metals
Explores coordination chemistry principles with a focus on transition metals and their electronic configurations.
Crystal Field Theory: Square Planar Complexes
Explores crystal field theory, focusing on square planar complexes and the spectrochemical series.
Crystal Field Theory: Spectrochemical Series
Explores the Spectrochemical Series for metals and ligands, Crystal Field Splitting, Jahn-Teller distortion, and bonding interactions in coordination compounds.
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.
Ligand Field Theory: Octahedral Coordination Complexes
Covers ligand field theory for octahedral coordination complexes with pure sigma donors.
Complexation Chemistry
Covers the thermodynamics of complexation chemistry, explaining metal-ligand complexes and the role of ligands in the environment.
Preparation & Stabilities of Complexes
Covers the preparation and stabilities of complexes, including redox reactions, substitution, and catalytic reactions.
Isomers and Chirality: Understanding Coordination Complexes
Discusses isomers, chirality, and the stability of coordination complexes.
Catalytic Asymmetric Reactions in Organic Chemistry
Explores catalytic asymmetric reactions in organic chemistry, covering principles, reactions, and ligands, bridging classics and current research.
Splitting Diagrams: Crystal Field Stabilization Energy
Explains splitting diagrams and Crystal Field Stabilization Energy calculations for transition metal complexes.
Complexation: Water Biogeochemistry
Explores complexation in bio-geochemical systems, emphasizing species sensitivity and its implications on toxicity and transport.
Coordination Complexes: Chromium Bromide Hydrates
Explores the coordination chemistry of chromium bromide hydrates and the significance of water molecules in complex hydration.
Chemical Reactions and Ligands
Discusses oxidation reactions, ligand complexes, equilibrium reactions, and electronic configurations in chemical complexes.
Chemical Bonding: Lewis Structures and Molecular Shapes
Explores chemical bonding, Lewis structures, molecular shapes, and molecular polarity.
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