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provided by the CNRS Capture and Detection of Organic Molecules Using Functionalized Materials: Applications in the Environment and Health. - This research project forms part of the work carried out under
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Master's degree in Materials Science and/or Computational Methods in Mechanical Engineering (or a closely related field). The successful candidate should demonstrate a strong background in numerical methods
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PhD thesis student (f/m) at ESRF and University of Bath to study CO₂ capture by coupling X-ray Raman
to detail are essential in this work environment. · Degree allowing enrolment for a PhD (such as MSc, Master 2 de Recherche, Laurea or equivalent) in chemistry, physics, and materials sciences
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functional materials. Research activities focus on controlled polymer synthesis, macromolecular engineering, polymer self-assembly, nanoparticle design, and the development of stimuli-responsive polymer
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on coordinated campaigns combining synthesis and multi-scale spectroscopy. The materials, synthesized at IRCELYON with independent control of phase, doping, and defects, will be characterized there by XPS/UPS in
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project, funded by the CONNECT-NM program. The student must have a strong background in chemistry, physical chemistry, or materials science. A good level of French and English is essential. Where to apply
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joint laboratory of CNRS/Grenoble INP-UGA/Université Grenoble Alpes, is a center of excellence in materials science and innovative processes. It covers a wide range of fields, from metallurgy
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, MFA), or spatially-explicit environmental footprinting (incl. GIS) - Knowledge in the mineral raw materials sector and criticality assessment methods - Knowledge/use of LCA software (e.g. SimaPro
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for experimental work able to work in a research team and also be able to work in autonomy good oral and writing skills LanguagesFRENCHLevelBasic LanguagesENGLISHLevelBasic Research FieldEngineering » Materials
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level or self-assembled into aggregates, - colour centres in wide bandgap semiconductor nanostructures (ZnO, hBN, SiC), - low dimensional hybrid perovskites. We are also studying their coupling