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comprehensive reactor model. - Definition of the dynamic conditions relevant to the target application - Evaluation of the catalytic properties of reference catalysts - Synthesis and characterization of materials
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renewable postdoctoral position is part of an innovative project focused on characterizing the modification of bio-based materials using natural enzyme mimics capable of oxidizing biomass, particularly
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scientific articles, presenting research results on conferences, and communicating with collaborators The Institute of Electronic, Microelectronic and Nanotechnology (UMR CNRS 8520 – https://www.iemn.fr/en
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technology platforms and 1,600 partner companies. For more information: https://www.imt-mines-ales.fr You will be affiliated with the Centre for Materials of Mines Alès (C2MA) at IMT Mines Alès and the PCH and
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equipped with a range of sample environments, including a Langmuir trough and a reactor for chemical vapour deposition (CVD) growth of 2D materials on liquid metal catalysts (LMCat). Current in-house
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of individual charges in real time. Researchers will use advanced germanium-based materials with exceptional quantum properties to pioneer new methods for manipulating quantum states. The anticipated outcomes
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the activity and stability of iridium oxide-based catalysts supported on various materials within a PEM electrolysis cell. Catalyst layers and membrane-electrode assemblies will be prepared and characterized in
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, phosphorescent Transition Metal Complexes (TMCs) possess appealing properties encompassing outstanding photo- and electro-chemical features, highly tunable emission color and relatively long-lived excited states
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project carried out within the framework of the ANR DOMINO program. More specifically, the position involves the characterization and catalytic evaluation of materials (metal–organic frameworks (MOFs) and
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platforms and 1,600 partner companies. For more information: https://www.imt-mines-ales.fr You will be affiliated with the Mines Alès Materials Centre (C2MA) at IMT Mines Alès and the PCH research unit. You