Coordination Chemistry Course
Dive into coordination chemistry: predict octahedral isomers, assess stability with ligand field and chelate effects, analyse colours and magnetism from d-electrons and spectra, choose ideal M(II) metals using stability data, and design spectroscopic tests for metals, geometries, and isomers in real-world catalysis, materials, and bioinorganic applications.

4 to 360 hours flexible workload
valid certificate in your country
What will I learn?
Gain a clear overview of coordination numbers, octahedral structures, and cis/trans isomers in complexes like [M(NH3)4Cl2] and [M(en)2Cl2]. Explore metal choices, d-electron configurations, ligand field theory, bonding, colours, and magnetic properties, linking them to stability, spectroscopy, lab techniques, and practical uses in catalysis and materials.
Elevify advantages
Develop skills
- Predict octahedral isomers by assigning cis/trans configurations and 3D ligand arrangements swiftly.
- Evaluate complex stability using ligand field theory, chelate effects, and HSAB principles efficiently.
- Analyse colours and magnetism by connecting d-electron counts, crystal field splitting, and spectral data.
- Select optimal M(II) metals based on thermodynamic and kinetic stability information.
- Design straightforward experiments to verify metal identity, geometry, and isomerism with spectroscopy.
Suggested summary
Before starting, you can change the chapters and the workload. Choose which chapter to start with. Add or remove chapters. Increase or decrease the course workload.What our students say
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