Electrochemical Cell Course
Gain mastery in electrochemical cells, progressing from core principles to designing battery-electrolyzer systems. Explore electrode kinetics, water electrolysis processes, safety protocols, and sizing techniques to create efficient, dependable cells and battery packs for practical chemical engineering uses. This course equips you with essential knowledge for real-world applications in energy storage and conversion.

4 to 360 hours flexible workload
valid certificate in your country
What will I learn?
This course offers a swift, hands-on route to designing effective electrochemical cells, spanning basic principles to functional devices. Master electrode potentials, Nernst equation, Butler-Volmer kinetics, and Tafel analysis, then evaluate key rechargeable battery types, pack arrangements, and safety measures. Employ straightforward procedures to dimension battery-electrolyser setups, predict voltages, currents, losses, and construct robust, high-efficiency systems.
Elevify advantages
Develop skills
- Electrochemical fundamentals: apply Nernst, Butler-Volmer, and Tafel equations in practical cells.
- Battery chemistry selection: compare Li-ion, NiMH, lead-acid, and LiFePO4 for optimal design.
- Water electrolysis design: select electrodes, electrolytes, and cell configurations safely.
- Performance modelling: estimate voltage, current, overpotentials, and cell efficiency accurately.
- Battery-electrolyzer sizing: calculate packs, C-rates, runtime, and protection requirements.
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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