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trials on the use of near-infrared spectroscopy (NIRS) And diffuse correlation spectroscopy (DCS) for critical care applications. In particular, this work will be the continuation of the HEMOCOVID-19
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devices based on speckle contrast optical spectroscopy (SCOS) and related metthods akin to near-infrared diffuse correlation spectroscopy. The fellow will be working with teams that collaborate with USA
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synthesis and spectroscopic techniques and Schlenk techniques and glovebox. Demonstrated experience and expertise in transient absorption spectroscopy, time resolved and steady state absorption and emission
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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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measurements, including photocurrent spectroscopy and phototransport characterization in high current-bias regimes Data analysis and interpretation of experimental results in the context of quantum geometry and
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fluorescence microscopy, Confocal laser scanning microscopy, Cryo-TEM and/or TEM, SEM, DLS, NTA, Zeta potential, SAXS/SANS, Fluorescence spectroscopy…). Experience in quantitative image analysis and microscopy
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research involving aqueous systems, carbonate materials or environmental processes. Hands-on experience with advanced analytical techniques such as XRD, SEM-EDS, ICP-OES/ICP-MS, FTIR, Raman spectroscopy and
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systems. Main tasks include material synthesis and characterization, low-temperature scanning tunnelling microscopy and spectroscopy, data analysis, scientific instrumentation, collaborative research
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and biosensors using microscopic techniques. Measure properties with force spectroscopy. Apply magnetic force microscopy (MFM). Use Kelvin probe force microscopy (KPFM). Execute AFM assays in liquid
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the mechanisms of novel light-gated ion channels. Working closely with team members and collaborators specializing in rational protein engineering, protein reconstitution, ultrafast spectroscopy, and C. elegans