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Chelation
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Related lectures (14)
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Complex Stability
Explores complex stability, chelate effect, and the application of chelating agents in medicine.
Metal Speciation: Complexation and Kinetics
Explores metal speciation, complex stability, and ligand exchange kinetics.
Trace Metals: Cycling, Regulation, and Biological Role
Discusses the cycling, regulation, and biological role of trace metals in plants.
Metal speciation: EDTA complexes
Explores metal-EDTA complexes, Zn(II) speciation, hydrolysis of metal ions, and iron(III) species distribution.
Metal Speciation and Chelating Ligands
Explores chelating ligands, metal complex stability, hydrolysis of metal ions, and complexation in natural waters.
Preparation & Stabilities of Complexes
Covers the preparation and stabilities of complexes, including redox reactions, substitution, and catalytic reactions.
Metal Speciation II
Explores metal complexation, stability factors, speciation calculations, chelating ligands, and natural water speciation.
Organometallic Reagents: Synthesis and Reactivity
Covers the synthesis and reactivity of organometallic reagents and enol chemistry, emphasizing enolate formation and factors influencing it.
Toxic Heavy Metals Mobility and Complexation
Covers the mobility and complexation of toxic heavy metals in the environment, including incineration and air pollution control systems.
Coordination Chemistry: Basics
Covers the basics of coordination chemistry, including metal complex formation and ligand effects.
Self-Diffusion in Metals
Explores self-diffusion in metals, covering temperature, pressure, crystal structures, diffusion coefficients, atomic jumps, and the Arrhenius equation.
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.
Microbial Iron Cycling: Mechanisms and Implications
Delves into microbial iron cycling mechanisms and photosynthesis strategies employed by various organisms.
Asymmetric Synthesis: Carbonyl Additions and Chelation
Explores asymmetric synthesis through carbonyl additions and chelation, emphasizing selectivity and key concepts like Felkin-Anh model.
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