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Field
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a support for catalysts. The post-doc's objective will be to understand the mechanisms of plasmon-assisted catalysis and to follow in situ chemical reactions for surface enhanced Raman spectroscopy
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, processing optimization, and experimental troubleshooting Materials characterization using techniques such as GIWAXS, Raman, FTIR, UV-vis, and electrical transport measurements Understanding structure-property
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, Raman spectroscopy, and solid-state NMR. Comparative physicochemical studies—including absorption, steady-state and time-resolved emission, and quantum-yield measurements—together with computational
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science, chemistry, or related fields, with a strong publication record. Prior experience in flow-cell electrochemistry, in-situ spectroscopy (UV-Vis, Raman, FTIR), or 3D printing and polymer processing is
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We are looking to explore the evolution of the carbon cycle over geologic time using Raman Spectroscopy as the primary tool. Work will entail detailed Raman analysis of carbon particles in ancient
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collaborative research in a multidisciplinary environment. Experience with analytical tools such as X-ray diffraction, SEM/TEM, FTIR, and Raman spectroscopy. Ability to communicate effectively and on a timely
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, heating technologies. Experience with analytical tools such as X-ray diffraction, SEM/TEM, FTIR, and Raman spectroscopy. Ability to conduct both independent and collaborative research in a multidisciplinary
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(e.g., FTIR, XRD, and Raman spectroscopy) to establish structure–property–performance relationships. Fabricate electrodes (buckypapers and cast films); assemble three-electrode half-cells and two
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parameters shape microstructure and cell performance. You will operate and optimise high-temperature, high-pressure synthesis; characterise materials by SEM/TEM, XRD, Raman, thermal and gas analysis; and
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related fields, with a strong publication record. Prior experience in flow-cell electrochemistry, in-situ spectroscopy (UV-Vis, Raman, FTIR), or 3D printing and polymer processing is desired. Good spoken