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microscopy, confocal microscopy, protein biochemistry and mass spectrometry. The postdoc will oversee master students, collaborate with a bioinformatics engineer and with cell biology engineer. The postdoc
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optoelectronic properties at multiple length scales using advanced local microscopy and characterization techniques (such as scanning probe–based approaches); Study of charge transport, recombination, and
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devices using broadband spectroscopy and electron microscopy The position offers a stimulating interdisciplinary environment and opportunities to develop advanced skills in numerical optimization
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pathogens develop and interact with their host, in order to identify new potential targets for therapeutics. The institute is part of a campus that has state of the art facilities including microscopy, flow
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will rely on advanced rheophysical, microscopy, and microfluidic techniques, as well as on the use of natural polymers derived from biomass (pectin, cellulose, hemicellulose), whose properties will be
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defended their PhD and have not yet undertaken a postdoctoral position are eligible. The candidate will carry out scanning tunneling microscopy (STM) experiments in a cryogenic and ultra-high-vacuum
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crosslinking of the illuminated area: the LEPO's expertise in scanning probe microscopy (AFM, STM) combined with light excitations will be used to monitor the evolution of the assemblies formed under
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Eligibility criteria - Knowledge of microelectronics technologies. - Experience working in clean room environments. - Experience using electron microscopy and optionally FIB (Focused Ion Beam). - Experience in
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composition – The composition and chemical speciation of the films will be analyzed by X-ray photoelectron spectroscopy (XPS), complemented by scanning electron microscopy (SEM). Surface infrared measurements