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, carbon-based films, PEDOT-type conducting polymer). Classical chemical, structural and morphological characterisation. Task II: Characterisation of ion transfer at the electrode/electrolyte interface using
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engineered inorganic/hybrid solids and polymers to combine the best of both worlds (easy manufacturing, high fluxes per unit volume and high selectivity through advanced tailoring) to reach high gas mixture
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Additional Information Eligibility criteria Materials science and/or engineering, a possible experience on polymers would be welcome. Experimental taste. Website for additional job details https
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3d colloidal model system. Background information: https://paddyroyall.github.io/padrus/Work_amoeba.html Publications of interest : https://paddyroyall.github.io/padrus/Publications.html Systems in
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, carbon-based films, PEDOT-type conducting polymer). Classical chemical, structural and morphological characterisation. Task II: Characterisation of ion transfer at the electrode/electrolyte interface using
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Additional Information Eligibility criteria Materials science and/or engineering, a possible experience on polymers would be welcome. Experimental taste. Website for additional job details https
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" design, replacing heterojunctions with homojunctions. SMOOTH concerns the realization of metal-free printed devices, using oriented polymer semiconductors (PSCs) and doped PSC regions as electrodes
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to develop innovative methods in organic synthesis, polymers, analytical chemistry and molecular modeling, and to apply them to different sub-fields of the discipline (bioorganic chemistry
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-doc follows on from a PhD thesis completed at the TIMC laboratory, in collaboration with the Annecy Genevois Hospital Center. The thesis focused on developing biomechanical models of the faces
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presenting project advances at conferences; Supervising and mentoring Master's students and PhD candidates involved in the project when needed; Contributing to the scientific and technological dissemination