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SD-26083 – POSTDOCTORAL RESEARCHER IN THE CHEMICAL VAPOR DEPOSITION OF METAL ORGANIC FRAMEWORKS F...
: https://www.list.lu/ How will you contribute? The CLEANH3 project investigates the gas phase synthesis of metal organic frameworks for the conversion of small and low-energy molecules into advanced
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SD-26084 – POSTDOCTORAL RESEARCHER IN THE CHEMICAL VAPOR DEPOSITION OF COVALENT ORGANIC FRAMEWORK...
: https://www.list.lu/ How will you contribute? The CLEANH3 project investigates the gas phase synthesis of covalent organic frameworks for the conversion of small and low-energy molecules into advanced
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SD-26085 POSTDOCTORAL RESEARCHER IN THE OXIDATIVE CHEMICAL VAPOR DEPOSITION OF FUNCTIONAL BUILDIN...
in their decisions and businesses in their strategies. Do you want to know more about LIST? Check our website: https://www.list.lu/ How will you contribute? The CLEANH3 project investigates the gas
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Raman system in close collaboration with industrial stakeholders (Veridis) If the project is successful, Veridis intends to offer a follow up to continue the development. Where to apply Website https
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with Re/oxide systems. This subject involves the preparation (impregnation, precipitation, etc.) and advanced characterisation (IR, Raman, XAS, TEM, etc.) of metal/oxide catalysts for the synthesis
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techniques (FTIR, NIR, Raman, …) with machine learning/ chemometrics. Responsibilities of the Position The Postdoctoral researcher is intended to support the soil spectroscopy research activities and digital
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les mélanges contenant des gaz moléculaires, la diffusion Raman rotationnelle sera également utilisée pour mesurer la densité des états fondamentaux et la température rotationnelle. L'ensemble de ces
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methodologies previously developed at CNRS-CEMHTI, including Raman, NMR and gas spectrometry, will provide insight into the relationships between these processes and the physicochemical properties
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that result from the interplay of magnetism, dimensionality, and topology. The primary experimental tools used will be neutron and Raman scattering, complemented by electron microscopy, electron energy loss
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pipelines for SDC workflows. Quantify SEI/CEI formation and evolution via CV/GCD/EIS/GITT/dQdV. Assist in operando/ in situ characterisation (e.g., FTIR, XRD, Raman) to correlate structure–property