Advanced Electrochemistry Concepts and Applications

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Explore the fascinating world of advanced electrochemistry through topics such as electrical double layer, Faradaic and non-Faradaic current, mass transfer in cells, mechanism of mass transport, galvanic and electrolytic cells, anodes and cathodes, polarization, and more. Learn about ideal and non-polarized electrodes, concentration polarization, diffusion coefficient, Fick's second law, Levich equation, and Ohmic potential. Dive deep into the principles and applications of electrochemistry in various industries.

  • Electrochemistry
  • Advanced Concepts
  • Mass Transport
  • Galvanic Cells
  • Polarization

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Presentation Transcript


  1. CHM 432: ADVANCED ELECTROCHEMISTRY

  2. CONTENTS

  3. ELECTRICAL DOUBLE LAYER

  4. Faradaic and Non faradaic current

  5. Mass Transfer in Cells with the Passage of Current

  6. Mechanism of Mass Transport

  7. Galvanic and Electrolytic Cells

  8. Galvanic and Electrolytic Cells

  9. Anodes and Cathodes.

  10. Ohmic Potential; IR Drop.

  11. Ohmic Potential; IR Drop.

  12. Polarization

  13. Ideal polarized and Non-polarized Electrodes and Cells

  14. Concentration Polarization.

  15. Diffusion Coefficient

  16. Ficks Second Law

  17. Levich Equation

  18. Ohmic Potential

  19. Effect of Ohmic Potential

  20. Effects of Ohmic potential and Concentration polarization

  21. Effects of over potential and Concentration polarization

  22. ELECTRICAL DOUBLE LAYER

  23. If the cell has a resistance of 6.42 and a current of 28.3mA is drawn, what will be the cell voltage?

  24. What voltage must be applied to operate the same cell in reverse as an electrolytic cell.

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