**Job Description**
The PhD candidate will focus on developing next-generation porous transport layers (PTLs) and microporous layers (MPLs) for Proton Exchange Membrane Water Electrolyzers (PEMWEs). This involves building a multi-scale computational model to capture complex transport phenomena within these porous structures and at their interfaces. The project aims to use model insights to guide manufacturing and optimization of PTL/MPL architectures, ultimately improving efficiency, durability, and reducing precious-metal requirements in green hydrogen technologies. The role combines modeling, simulation, and experimental validation in an international, multidisciplinary team.
**Skills & Abilities**
• Experience with modelling multiphase flows or electrochemical reactors (advantageous).
• Analytical skills.
• Initiative.
• Creativity.
• Naturally curious and eager to learn, with a strong interest in research.
• Excellent written and oral communication skills in English.
• Good team spirit.
• Ability to work in an internationally oriented, social environment.
**Qualifications**
Required Degree(s) in:
• Chemical Engineering
• Physics
• Mechanical Engineering
• Related disciplines (Master’s degree or equivalent)
**Experience**
Other:
• Experience with modelling multiphase flows or electrochemical reactors is a plus.
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