Inserm chair - Development of nano-imaging methods for complex patho-physiological processes mo[...]

BioImaging North America

Paris

Sur place

EUR 23 000 - 28 000

Plein temps

14 jours+
Générateur de candidature

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Résumé du poste

BioImaging North America invites applications for a PhD Scholarship to explore electron beam induced crystallisation in liquid phase TEM. The project combines literature review, simulations, irradiation experiments and analytical validation to understand radiolysis-driven effects on solubility and crystallisation.

The successful candidate will work in the Department of Physics, Bernal Institute, collaborating across disciplines to integrate radiolysis parameters into computational models and

Qualifications

  • 1st class or 2.1 degree in Chemistry/ Chemical Engineering/ Chemical Physics/ Physics/ Nanoscience or related discipline
  • Demonstrable research experience
  • Excellent analytical and problem-solving skills
  • Excellent written and verbal communication (English language proficiency required for non-EU applicants)
  • Ability to work in an interdisciplinary research team
  • Ability to work independently

Connaissances

Analytical skills
Problem solving
Interdisciplinary teamwork
Independent working
Communication skills

Formation

1st class or 2.1 degree in Chemistry/ Chemical Engineering/ Chemical Physics/ Physics/ Nanoscience

Outils

Python
MATLAB
COMSOL
GC
HPLC
MS

Description du poste

This PhD Scholarship will explore the mechanism governing electron beam induced crystallisation in liquid phase transmission electron microscopy. Recent research in the Cookman group has demonstrated that pharmaceutical crystals can form under highly undersaturated conditions during electron beam irradiation. This project will seek to understand the fundamental mechanism responsible for this phenomenon with particular focus on the radiolysis-driven influence. Solvent radiolysis will be investigated through a combination of literature review from archived resources, computational simulations, experimental irradiation, and analytical validation. The successful candidate will integrate radiolysis parameters from literature into existing computational models to assess the steady state concentration of radiolysis-derived products and the impact of varying electron beam parameters. Irradiation of the solvents coupled with complimentary post-analysis will experimentally validate and refine the simulations. In addition, solubility experiments will be conducted on a relevant compound capable of crystallising in LPTEM, to assess the influence radiolysis-derived products have on its solubility. The PhD student will be based in the Department of Physics and embedded in the Bernal Institute where an interdisciplinary environment encourages scientific field cross-over, necessary for the success of this project.

Essential Criteria
  • 1st class or 2.1 degree in Chemistry/ Chemical Engineering/ Chemical Physics/ Physics/ Nanoscience or related discipline
  • Demonstrable research experience
  • Excellent analytical and problem-solving skills
  • Excellent written and verbal communication (English language proficiency required for non-EU applicants)
  • Ability to work in an interdisciplinary research team
  • Ability to work independently
Desirable Criteria
  • Masters degree in a cognisant field
  • Experience with electron microscopy
  • Experience with analytical characterisation techniques, e.g., GC, HPLC, MS
  • Familiarity with liquid phase transmission electron microscopy
  • Proficiency in relevant programming tools, e.g., Python, MATLAB, COMSOL
  • Experience with computational modelling and simulations
  • Evidence of research outputs

Stipend: €25,000 per annum (covered for 3 years) Fees: Full coverage of university fees for EU and non-EU

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