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Lecture
Hydrogen Economy: Fuel Cells and Electrochemistry
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Electrode Polarization and Tissue Damage
Explores electrode polarization, tissue damage causes, and avoidance methods, including biphasic pulses and interface modeling.
Electrochemical Reactions
Explores electrochemical reactions, including electrolysis of NaCl, anodic and cathodic reactions, production rates, and current efficiency.
Batteries, Fuel Cells and Electrolysis
Delves into the operation of a phosphoric acid fuel cell and its design for electricity and heat co-generation.
Electrochemistry: Experiments
Explores electrochemistry through experiments with concentration cells, conventional cells, and a fuel cell.
Electrochemistry: Redox Reactions and Cell Potential
Explores electrochemistry, emphasizing redox reactions and cell potential in galvanic cells, Nernst and Faraday's laws, and their applications in electrolysis and fuel cells.
Mass Transport in Butler-Volmer Equation
Explores the influence of mass transport on the Butler-Volmer Equation and analyzes the total overpotential and its components.
Solar Fuels: Conversion Pathways and Reactor Concepts
Explores solar energy conversion into fuels, reactor concepts, and material requirements for efficient photoelectrochemistry.
Batteries, Fuel Cells and Electrolysis
Covers the polymer membrane fuel cell and compares low-temperature hydrogen platinum fuel cells with high-temperature hydrocarbons using nickel.
Batteries, Fuel Cells and Electrolysis: Fuels
Discusses the importance of operating temperature in fuel cells and the process of converting hydrocarbons into syngas.
Butler-Volmer Equation
Explains the Butler-Volmer equation, exchange current density, and electrode reaction kinetics.