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Postdoc in Computational Catalysis, Machine Learning and Reaction Kinetics

UM6P - University Mohammed VI Polytechnic

Nouveau
Senior 🇬🇧 English
Python ASE pymatgen Quantum ESPRESSO VASP CASTEP DFT HPC

Description du poste

About the role

The Materials Science, Energy, and nano‑engineering (MSN) department at UM6P seeks a postdoctoral researcher to develop first‑principles‑based microkinetic models for heterogeneous catalytic reactions, leveraging machine‑learned interatomic potentials.

Key responsibilities

  • Calculate adsorption energetics, reaction energies and activation barriers on catalytic surfaces using plane‑wave DFT (Quantum ESPRESSO, VASP, CASTEP or equivalent).
  • Construct microkinetic models from first‑principles energetics, compute rates, selectivity and surface coverages, and identify rate‑controlling steps.
  • Couple microkinetic models to reactor simulations to predict conversion and selectivity under relevant operating conditions.
  • Assemble DFT training datasets, fine‑tune pretrained machine‑learned interatomic potentials, and validate them against withheld DFT data.
  • Automate reproducible calculation campaigns on HPC resources using Python‑based scientific workflows.
  • Publish results in peer‑reviewed journals, present at international conferences and supervise Master’s and PhD students.

Required profile

  • PhD in Chemical Engineering, Chemistry, Physics, Materials Science, Energy Engineering or a closely related field.
  • Experience with plane‑wave DFT calculations of catalytic surfaces.
  • Background in developing microkinetic models and coupling them to reactor models.
  • Hands‑on experience fine‑tuning machine‑learned interatomic potentials on DFT data.
  • First‑author publications reporting original computational work.
  • Excellent written and spoken English and ability to work independently and collaboratively.

Required skills

  • Python (including ASE and pymatgen).
  • Plane‑wave DFT packages (Quantum ESPRESSO, VASP, CASTEP or equivalent).
  • Microkinetic modeling.
  • Machine‑learned interatomic potentials.
  • High‑performance computing (HPC) workflow automation.

Questions fréquentes

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UM6P - University Mohammed VI Polytechnic