| Track 1: Water Electrolysis and Electrochemical Hydrogen Production |
· Water splitting technologies: Proton Exchange Membrane (PEM) electrolysis
· Water splitting technologies: Anion Exchange Membrane (AEM) electrolysis
· Water splitting technologies: Solid Oxide Electrolysis Cell (SOEC)
· Hydrogen Evolution Reaction (HER) and Oxygen Evolution Reaction (OER) electrocatalysts
· Non-precious and precious metal alternative electrocatalytic materials
· Catalyst stability, degradation, and durability mechanisms
· Electrolyzer membrane materials
· Electrode materials and interface engineering
|
| Track 2: Fuel Cell Materials and Electrochemical Processes |
· Electrocatalysts and functional materials for fuel cells
· Fuel cell membranes, electrodes, and interface design
· Key materials for Proton Exchange Membrane Fuel Cells (PEMFC)
· Materials and electrochemical behavior of Solid Oxide Fuel Cells (SOFC)
· Fuel cell performance degradation and material failure mechanisms
|
| Track 3: Hydrogen Combustion and Hydrogen-Using Materials |
· Fundamental mechanisms of hydrogen combustion and material interactions
· High-temperature and hydrogen-resistant materials for hydrogen boilers
· Key structural materials for hydrogen internal combustion engines
· Materials reliability and lifespan in hydrogen gas turbines
· Material failure and safety issues in hydrogen environments
· Hydrogen metallurgy
|
| Track 4: Hydrogen Energy Materials, Storage, and Conversion Systems |
· Hydrogen storage materials: gaseous, liquid, solid, and chemical storage
· Structural regulation and performance optimization of hydrogen storage materials
· Materials and interface issues in hydrogen compression and liquefaction
· Key materials in hydrogen energy conversion and utilization
· Modeling, simulation, and multiscale analysis of hydrogen-related materials
· Hydrogen pipeline materials, valves, and fittings
· Hydrogen refueling stations
|
|