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, etc.). The project will be carried out within the Oxitronics group at Laboratoire Albert Fert (CNRS, Thales, Université Paris-Saclay), a leading laboratory in spintronics and oxide electronics. The lab
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the particle size of the oxides produced. In addition, depending on the conditions encountered in the combustion chamber (pressure, temperature, gas composition), combustion products can be nanometric and/or
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on different conditions (composite electrode formulation, electrolyte formulation, pH, oxide or polymer-based negative electrode, temperature…) Optimisation of the devices. Redaction of drafts/publications and
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the oxidation state and the electric-polarization direction in HfO2. Project included in the activities of the MEM group of CEMES, funded by the labex NanoX. Where to apply Website https
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candidate will work in the frame of a regional project ESKYMO. His/her missions will include: the definition of the thin films characteristics in relation with the engineer for the growth of the oxide thin
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Engineering (PHELIQS, https://www.pheliqs.fr/en ), a joint research unit of the French Commission for Atomic Energies and Alternative Energies (CEA), Université Grenoble Alpes and Grenoble INP, is currently
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SD-26085 POSTDOCTORAL RESEARCHER IN THE OXIDATIVE CHEMICAL VAPOR DEPOSITION OF FUNCTIONAL BUILDIN...
in their decisions and businesses in their strategies. Do you want to know more about LIST? Check our website: https://www.list.lu/ How will you contribute? The CLEANH3 project investigates the gas
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trapping/detrapping in the gate dielectric is becoming increasingly important, as its amplitude is inversely proportional to the surface area of the gate oxide. This also leads to a sharp increase in dynamic
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, supporting sustained nucleotide biosynthesis and ATP production; Targeting oxidative phosphorylation requires prior bioenergetic stratification of tumors using defined biomarkers. Leveraging a unique biobank
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with other histone PTMs. This work will provide atomic-scale insights into oxidative chromatin regulation and open perspectives for understanding redox-dependent epigenetic mechanisms and future