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- MOHAMMED VI POLYTECHNIC UNIVERSITY
- Leibniz
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with tailored morphology Develop processing routes Perform advanced structural and physicochemical characterization (SEM, SAXS, DLS, DSC, TGA, DMA, rheology, adhesion testing, FTIR, Raman, XPS) Quantify
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production via at least one of the following techniques: magnetron sputtering, electrodeposition, wet chemical methods. The catalysts will be characterized via XPS, XRD, and electron microscopy and we will
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mechanisms. Conduct materials and interfacial characterization using appropriate techniques (e.g., XRD, SEM/TEM, XPS, Raman/FTIR, DSC/TGA), and correlate structure–property–performance relationships. Develop
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expected to: Design advanced electrode and electrolyte materials for aqueous battery applications, and employ various physical characterization techniques (OEMS, EQCMD, XRD, SEM/TEM, XPS) to investigate
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or other silica-based materials); Experience in characterization of porous materials using various techniques such as BET, TGA-DSC¬MS, PXRD, SXRD, FTIR, NMR, SEM, XPS, etc. and technical skills
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x-ray photoemission spectroscopy. This includes a newly established near-ambient-pressure XPS facility (NAP-XPS). In the MAGNESIS project we will specifically work towards understanding and
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of polymers is preferred) familiarized with NMR, FTIR, XPS nice to have: experience with building devices, such as thermoelectric and piezoelectric generators nice to have: experience gained at research
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characterization techniques such as scanning electron microscopy (SEM, HRTEM), X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS) and chemisorption techniques (TPD, TPR) is needed. Your contribution
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-high vacuum (UHV) systems and surface science characterization techniques (e.g., XPS, UPS, LEED, SEM). A strong research background in 2D materials synthesis or characterization. Proficiency in English
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https://www.science.org/content/article/metal-scaffolds-turn-bacteria-live-wires . [1] Postdoctoral fellow: high resolution microscopy and immunolabeling of conductive structures in multicellular cable