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Sorbonne Université SIS (Sciences, Ingénierie, Santé) | Paris 15, le de France | France | 27 days ago
3 Mar 2026 Job Information Organisation/Company Sorbonne Université SIS (Sciences, Ingénierie, Santé) Research Field Physics Researcher Profile Recognised Researcher (R2) Leading Researcher (R4
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Ph.D. Position in Organic Chemistry, Polymer Chemistry, and/or Sol–Gel Chemistry & Materials Science
develops advanced and/or low eco-impact, porous materials for insulation, sorption, and energy-related applications. Our research portfolio spans fundamental materials chemistry, process–structure–property
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Your Job: Development, preparation, and characterization of state-of-the-art and novel catalysts for polymer recycling towards hydrogen carrier molecules Characterization of polymer thin films
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well as developing polymer coatings with graphene composites Contest Procedure Applications must be exclusively submitted on the admissions platform of the Instituto Superior Técnico at https
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. Knowledge of problems related to the rheological and chemical characterization of asphalt and polymer materials used in road construction in civil engineering. Ability to analyse the properties of asphalt
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contribute to exciting research in a collaborative and dynamic environment. This position offers an opportunity to take part in advanced research on the design and synthesis of porous polymers. You will work
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of Thermodynamics, Mechanical Engineering and Energy, in the scientific field of technical sciences, scientific field of chemical engineering – 1 employee (m/f) 2. in the Department of Polymer Engineering and Organic
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process. Experimental work will include melt processing of dyes and polymers in an extruder, as well as emulsion polymerisation of dispersions on an experimental scale, as well as extensive chemical
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between the polymer matrix and carbon nanotubes in nanocomposites. In the first phase, a critical review of the literature will be carried out on numerical and experimental methodologies used to investigate
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environmentally-friendly hydraulics. The aim of this project is to improve the understanding and the ability of designing aqueous lubricants based on polymer solutions in water. The main objectives are to study the