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• Participation in micro- and nanofabrication processes using CRHEA's state-of-the-art cleanroom facilities (advanced lithography and etching techniques) • Optical and structural characterization of fabricated
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, physical chemistry, photophysics and biology, and seeks to simultaneously extract structural, dynamical and environmental information at the single-molecule scale. Within the framework of this position
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Mohammed (Maurice Halbwachs Center, CNRS). This research project is structured around five axes: analysis of police and court records; sociology of the anti-drug police enforcement; analysis of the social
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the first objective is to extend these findings to silicon solar cells. Two emerging concepts will be investigated and compared: (1) Multi-resonant absorption induced by perfectly ordered structures
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into key intermediates such as FDCA and DFF. And to a lesser extent to: • The development of hybrid photo–bio catalytic systems • The study of structure–activity relationships and system integration
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chemistry synthesis (organic and coordination chemistry) - intercalation and exfoliation chemistry - synthesis in supercritical media - structural and spectroscopic characterisation - magnetic and
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polymerization and electropolymerization. The structures will be confirmed, for example, by 1H and 13C NMR titration, FTIR, mass spectrometry, UV-vis and fluorescence spectroscopy, electrochemistry, size exclusion
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refrigerators (collaborative European project EIC Pathfinder with 9 partners from 4 different countries https://frostbitproject.eu ), we are looking for a postdoctoral researcher to join us at CRM2[1
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from the advantages offered by the CNRS. Where to apply Website https://emploi.cnrs.fr/Candidat/Offre/UMR5280-FRABES-003/Candidater.aspx Requirements Research FieldEngineeringEducation LevelPhD
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and associated with biological processes such as the circadian rhythm. The aim of the project is to understand at a molecular level the impact of these modifications on the structure and dynamics