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thermal energy storage systems based on Phase Change Materials (PCMs). The project relies on a unique high-temperature experimental facility developed during the PhD project INNO-REV and currently in its
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performance. This postdoctoral project aims to investigate the potential of newly developed high-temperature superconducting materials — such as ZrN, HfN, and NbTiN — produced by ICPMS-CNT and CEA-LETI, as
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The postdoctoral researcher will join the CORIA laboratory (UMR6614 CNRS – INSA Rouen Normandie) within the Turbulence & Mixing research group, under the supervision of Prof. Mostafa Safdari. The position is part of
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: The postdoctoral researcher will contribute to the development and application of the AESEC technique for the study of electrochemical systems in extreme environments, particularly in concentrated high-temperature
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-time postdoctoral researcher to join an ambitious research program dedicated to the discovery and development of mixed-anion thermoelectric materials. The project is funded by the University of Caen
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% of total energy consumption, with over half of residential energy use going toward heating and cooling. Insulation plays a key role in reducing this consumption while ensuring thermal comfort by limiting
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a major energy-transition challenge: reducing CO₂ emissions from high-temperature chemical processes, a large share of industrial energy use. Key processes—methane steam reforming, naphtha steam
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/metal phase transition during the optical control of PCM materials (primarily GeTe-type compounds). As part of the OPALE project, we are offering an 11-month postdoctoral research position to tackle