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. Hands-on experience with thin-film characterization techniques such as XRD, SEM, AFM, and UV-vis spectroscopy. Knowledge of large-scale deposition techniques such as slot-die coating or similar methods is
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analysis (TG, DTA, DSC), - mass spectrometry (MS), - atomic absorption spectroscopy (AAS), - UV-Vis spectroscopy, - ATR-FTIR spectroscopy, - CHNSO elemental analysis, - potentiometry, - classical analytical
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challenging chemical bonds (N–H, O–H, and C–H) under mild conditions. The project combines plasmonic materials, photoelectrochemistry, and ultrafast laser spectroscopy to investigate and control charge transfer
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applications and in cell cultures. Organic synthesis and bioconjugation. Absorbance and fluorescence spectroscopy. Biophysical studies (FIDA, BLI, ITC, NMR). Cell culture, fluorescence microscopy, flow cytometry
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will also participate to the development of an experimental setup and procedures allowing characterizing optical properties of transparent ceramics (including UV-Vis spectroscopy and light scattering
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polarizing agents for nuclear spin hyperpolarization in NMR spectroscopy and imaging applications. Project Overview: This research aims to leverage radical dynamics to improve spin polarization transfer
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and optical properties. Experience in molecular spectroscopy (UV-Vis absorption/emission) and molecular structure elucidation. Ability to work both independently and within a multidisciplinary research
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unique proteins function. In addition to mass spectrometry, the Leney group utilises SDS PAGE, chromatography, UV-vis spectroscopy, fluorescence spectroscopy, bioinformatics and in collaboration with
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, UV-Vis spectroscopy, circular dichroism and fluorescence. Study of the behaviour of the synthesised compound as selfassembled materials, by microscopy (TEM, cryo-TEM, AFM, SEM) and spectroscopic
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imaging probes to nanocarriers. Conduct drug release, stability, and degradation studies under physiologically relevant conditions. Purify and characterize nanomaterials using HPLC, SEC, NMR, FTIR, UV–Vis