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A postdoctoral research position in experimental ultrafast spectroscopy is available in the School of Chemistry at the University of Bristol, supported by the ERC Advanced Grant 101199104 Ultrafast
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for the conversion of CO2 into hydrocarbons. The reaction mechanisms will be studied using in situ surface techniques, particularly IR spectroscopy. The catalysts will then be characterized after use by advanced
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: * Design, construction, and optimization of a high-throughput, multiplexed setup for single-particle spectroscopy based on SPAD arrays. * Quantitative characterization and mitigation of error sources
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spectroscopy, elemental analysis, thermogravimetric analysis, physisorption measurements, zeta potential measurements electrochemical characterization of the samples via cyclovoltammetry, galvanostatic
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infrastructures organized in infrastructure platforms, of which the Vibrational Spectroscopy Core Facility (ViSp) is a central infrastructure for this project (https://www.umu.se/en/research/infrastructure/visp
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; Condensed Matter Theory; Computational Physics; X-ray Spectroscopy; Electronic Structure; Ultrafast Dynamics , Experimental Atomic Molecular and Optical Physics , Experimental Condensed Matter , Experimental
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. Playford, H.Y., Ravel, B., Levin, I., “Incommensurate modulation and competing ferroelectric/antiferroelectric modes in tetragonal tungsten bronzes,” Chem. Mater., https://doi.org/10.1021/acs.chemmater
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-throughput characterization methods include spectroscopy, optical and scanned probe microscopy, scattering, reflectivity, ellipsometry, and contact angle measurements. See http://www.nist.gov/mml/polymers
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star and planet formation research group led by Dr Emma Whelan. For more information on the work of the group please see https://www.maynoothuniversity.ie/physics/our-research . This position is part of
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analyse de l'air exhalé. La spectroscopie photoacoustique (PAS) est une technique optique qui permet de détecter les concentrations de gaz en mesurant les ondes sonores produites lorsque la lumière laser