Coordination Chemistry Course
Master coordination chemistry by predicting isomers, tuning color and magnetism, and linking metal–ligand bonding to stability and reactivity—using real transition-metal complexes relevant to catalysis, materials, and bioinorganic chemistry. This course covers coordination number, octahedral geometry, cis/trans isomerism, metal selection, d-electron counting, ligand field effects, bonding, color, magnetism, stability, spectroscopy, experimental design, and practical applications.

from 4 to 360h flexible workload
valid certificate in your country
What will I learn?
This course provides a focused overview of coordination chemistry, including coordination number, octahedral geometry, cis/trans isomerism in complexes like [M(NH3)4Cl2] and [M(en)2Cl2], metal selection, d-electron counting, ligand field effects, bonding, color, magnetism, stability, spectroscopy, experimental design, and real-world applications in catalysis, materials, and bioinorganic chemistry.
Elevify advantages
Develop skills
- Predict octahedral isomers: quickly assign cis/trans and 3D ligand layouts.
- Evaluate complex stability: apply ligand field, chelate, and HSAB concepts fast.
- Analyze color and magnetism: link d-electron count, Δo, and spectra in practice.
- Select optimal M(II) metals: justify choices using thermodynamic and kinetic data.
- Design simple tests: confirm metal, geometry, and isomer via key spectroscopic tools.
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 are saying
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