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accident situation. In order to solve this problem, we propose in this project to develop specific sensors using porous materials of the Metal-Organic Framework (MOF) type for the selective detection
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lead to innovative applications in future nanodevices. A central aspect of the project will involve finite-element simulation studies of ferroelectric materials, specifically analyzing the effects
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or a closely related field. Additional comments Also posted at https://euraxess.ec.europa.eu/jobs/309486chat Website for additional job details https://emploi.cnrs.fr/Offres/CDD/UMR9025-DANCOM-003
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develop innovative THz biosensors based on dielectric patterned photonic crystal cavities. We will design photonic crystal cavities providing a high electric field concentration with an ultra-high Q factor
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interest as: i) the use of sodium metal as anode and different cathode materials to build a full Na-ASSB battery cell is possible2, ii) the conductivity of NaSICON solid electrolyte is in the range of 3-5.10
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to chemically separate each element of interest as well as isotope ratio measurements using inductively coupled plasma mass spectrometry (MC-ICPMS). Previous experience with one or both methodologies is an
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metal antenna. When photon energy exceeds the bandgap of the SC, mobile electron-hole pairs are generated and accelerated by a static electric field applied to the SC via polarizing electrodes, producing
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the literature. The successful candidate should have a strong background in elemental and isotope geochemistry, petrology and numerical modeling. The collaboration involves LMV, Clermont-Ferrand, France. The
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of Earth Sciences in Orleans. This thesis is part of the ANR 'MagBrines' funding that aims at developing a better understanding and ultimately detect metal-enriched brines in the Lesser Antilles