PhD in Molecular Modeling for Green Hydrogen Processes

Delft University of Technology

Delft

On-site

EUR 31,000 - 40,000

Full time

14 days+

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Benefits offered by this job

Customisable compensation package
Health insurance discounts
Monthly work costs contribution
Relocation support
Dual Career Programme

Job summary

Delft University of Technology (TU Delft) invites applications for a doctoral position in molecular modeling to advance green and low-carbon hydrogen technologies. You will join the Process & Energy department within Mechanical Engineering and collaborate with a broad consortium of researchers, end-users, and high-tech partners.

Your work focuses on developing and validating models for thermodynamic and transport properties in hydrogen production processes, including membranes and electrolysers'

Qualifications

  • Holds an MSc in Mechanical, Chemical, Materials Engineering, Physics, or a similar discipline.
  • Excellent written and verbal communication skills in English.
  • Enjoys working in a team with other students, researchers, and stakeholders.
  • Able to work independently toward producing novel and accurate results.

Responsibilities

  • Model systems essential for the design and optimization of hydrogen production processes.
  • Produce high-quality thermodynamic, transport, and kinetic data for multiscale models.
  • Investigate membrane interfaces for PEM and AEM electrolysis systems; compute visco-elastic properties.

Skills

Teamwork
English proficiency
Independent working
Communication skills

Education

MSc in Mechanical, Chemical, Materials Engineering, Physics or similar

Job description

Delft University of Technology (TU Delft) invites applications for a doctoral position in molecular modeling to advance green and low-carbon hydrogen technologies. You will join the Process & Energy department within Mechanical Engineering and collaborate with a broad consortium of researchers, end-users, and high-tech partners.

Your work focuses on developing and validating models for thermodynamic and transport properties in hydrogen production processes, including membranes and electrolysers'

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