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structural characterization of the corneocyte–lipid interface using state-of-the-art neutron diffraction and neutron reflectometry, combined with advanced optical microscopy approaches. The project is
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contact and thus minimize friction and damage to the surfaces for improved energy efficiency [5,6]. To characterize these different polymer brushes, atomic force microscopy (AFM) is used, which in its
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of Operating Microelectronic Devices by X-ray Diffraction Microscopy Beamline ID01, at the ESRF is a world leading instrument dedicated to micro- and nano-beam X-ray diffraction imaging experiments. It enables
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authority of the MESR. Super-resolution imaging in optical microscopy now achieves nanometric resolution without requiring electron microscopy. However, it currently remains limited to the use of fluorescent
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microscopy, nanosciences, biosensing, and nanobiotechnologies. Jerome Wenger’s group has acquired a wide expertise in the nanoscale control of light fields in plasmonic nanostructures and its application
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electron microscopy, and potential measurement campaigns at the SOLEIL and ESRF synchrotrons. Functional characterization of epitaxial layers, in particular electrical and transport measurements: Hall effect
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offer state-of-the art instrumentation and expertise in the fields of flow cytometry, electron and photonic microscopy, proteomics. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR7592
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, The acquaintance with the spectroscopic methods (UV-VIS, IR, Raman), confocal microscopy, as well as with computer simulation skills is highly desirable. Additional Information Work Location(s) Number of offers
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approach combining cryo-electron microscopy, NMR spectroscopy, and advanced molecular modeling, the research will unravel the molecular architecture and conformational dynamics of pili and their interactions
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will explore both purely plasmonic and hybrid metal–semiconductor architectures to tailor electronic and thermal properties. The project combines numerical modeling and experimental nanophotonics