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equipped with everything necessary for the successful completion of the proposed research. Some equipment has been recently renewed: 600 MHz NMR (2026), HRMS (2026), chiral HPLC (2026); other equipment will
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, organized, and able to work effectively in a multidisciplinary team Experience with antibiotic release assays, LC-MS/HPLC, oxygen measurements, hypoxia models, biofilms, or nanomedicine testing is preferred
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of bioanalytical chemistry, techniques such as HPLC, HPLC-MS, NMR used for monitoring enzymatic reactions good knowledge (reading, speaking, writing) of English and Romanian; specific requirements—a good
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chromatography (gas chromatography coupled with mass spectrometry (GC-MS), liquid chromatography (HPLC)). Some characterizations and analyses will be carried out via the platforms of the Grenoble campus
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, bioavailability and/or controlled release; familiarity with physicochemical characterisation methods for nanomaterials and formulations, such as DLS, zeta potential measurements, UV–Vis spectroscopy, HPLC
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including FTIR, DSC, TGA, MFR, rheology, DMA, GC-MS, HPLC, SEM Development of new polymer formulations through the targeted use of fillers, reinforcing fibers, additives, and adhesion promoters Optimization
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techniques (such as HPLC and GC) on various samples collected during the fermentation experiments. Chemometric analyses of the obtained data. NMBU via Unsplash NMBU Competence Required qualifications A
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analyses; • characterising the obtained nanomaterials using analytical techniques such as UV-Vis spectroscopy, high-performance liquid chromatography (HPLC) and dynamic light scattering (DLS
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of nanoparticle formation through Small Angle X-ray Scattering (SAXS) and Raman spectroscopy. Automated sampling during polymerisation will enable complementary ex situ analyses including SEC, NMR and HPLC
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appropriate, GC, NMR and HPLC. Relate spectroscopic signatures and reaction kinetics to film formation and sealing performance, including controls against benign environmental changes and chemical interferents