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Last updated:

October 13, 2022

Duration:

Unlimited Duration

FREE

This course includes:

Unlimited Duration

Badge on Completion

Certificate of completion

Unlimited Duration

Description

This course introduces principles and mathematical models of electrochemical energy conversion and storage.

Students study equivalent circuits, thermodynamics, reaction kinetics, transport phenomena, electrostatics, porous media, and phase transformations. In addition, this course includes applications to batteries, fuel cells, supercapacitors, and electrokinetics.

Course Curriculum

    • Basic Physics of Galvanic Cells, Electrochemical Energy Conversion Unlimited
    • 2011 Lecture 1: Basic Physics of Galvanic Cells Unlimited
    • 2011 Lecture 2: Electrochemical Energy Conversion Unlimited
    • Electrochemical Energy Storage Unlimited
    • 2011 Lecture 3: Electrochemical Energy Storage Unlimited
    • 2011 Lecture 4: Dynamics of Equivalent Circuits Unlimited
    • 2011 Lecture 5: Impedance spectroscopy Unlimited
    • 2011 Lecture 6: Impedance of Electrode Unlimited
    • 2011 Lecture 7: Statistical Thermodynamics Unlimited
    • 2011 Lecture 8: The Nernst Equation Unlimited
    • 2011 Lecture 9: Fuel Cells and Lead-Acid Batteries Unlimited
    • Pourbaix Diagram Unlimited
    • 2011 Lecture 9: Fuel Cells and Lead-Acid Batteries Unlimited
    • Metal Acid Batteries, Lemon Battery Demo Unlimited
    • Li-ion Batteries, Pseudocapacitance Unlimited
    • 2011 Lecture 10: Li-ion Batteries Unlimited
    • 2011 Lecture 37: Pseudocapacitors and Batterie Unlimited
    • Ideal Solution Model, Linear Sweep Voltammetry Unlimited
    • 2011 Lecture 11: Reconstitution Electrodes Unlimited
    • 2011 Lecture 11: Reconstitution Electrodes Unlimited
    • 2011 Lecture 14: Faradaic Reactions in Concentrated Solutions Unlimited
    • 2011 Lecture 12: Faradaic Reactions in Dilute Solutions Unlimited
    • 2011 Lecture 13: Butler-Volmer Equation Unlimited
    • Electrocatalysis Unlimited
    • 2011 Lecture 15: Ion Adsorption and Intercalation Unlimited
    • Electrochemical Phase Transformations Unlimited
    • Homogeneous Charge Transfer Unlimited
    • Heterogeneous Charge Transfer Unlimited
    • Charge Transfer at Metal Electrodes Unlimited
    • 2011 Lecture 16: Concentration Polarization Unlimited
    • 2011 Lecture 19: Transient Diffusion Unlimited
    • 2011 Lecture 20: Warburg Impedance Unlimited
    • Forced Convection I Unlimited
    • 2011 Lecture 17: Forced Convection in Fuel Cells (I) Unlimited
    • Forced Convection II Unlimited
    • 2011 Lecture 18: Forced Convection in Fuel Cells II Unlimited
    • 2011 Lecture 21: Solids and Concentrated Solutions Unlimited
    • 2011 Lecture 22: Transport in Bulk Electrolytes Unlimited
    • Homogeneous Reaction-diffusion Unlimited
    • 2011 Lecture 22: Transport in Bulk Electrolytes Unlimited
    • 2011 Lecture 23: Ion Concentration Polarization Unlimited
    • 2011 Lecture 24: Diffuse Charge in Electrolyte Unlimited
    • 2011 Lecture 25: Diffuse Double Layer Structure Unlimited
    • 2011 Lecture 32: Percolation Unlimited
    • 2011 Lecture 33: Macroscopic Conductivity of Composite Unlimited
    • 2011 Lecture 34: Transport in Porous Media Unlimited
    • 2012 Lecture 36–37: Scaling Analysis of Energy Storage Unlimited
    • 2011 Lecture 35: Porous Electrodes (I. Supercapacitors) Unlimited
    • 2011 Lecture 36: Electrochemical Supercapacitor Unlimited
    • 2011 Lecture 37: Pseudocapacitors and Batteries Unlimited

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Massachusetts Institute of Technology