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Field
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materials in highly efficient thin film photovoltaic devices. Your Role... Inorganic thin film photovoltaics require low energy to fabricate, are stable for decades, and have achieved efficiencies comparable
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, ellipsometry, etc.) Extensive experience in thin film characterization such as ellipsometry, XRD, XPS, RBS, XRR, AFM, Raman, and UV-Vis. Experience working in a collaborative, cross-disciplinary environment
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determination. You will contribute to the synthesis of thin-film and nanoparticle electrocatalyst libraries in collaboration with other members at the CFN. You will collaborate with scientific staff with diverse
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embedded in the Nanoelectronic Materials NEM department of the faculty of Science and Technology. The NEM department specialises in creating and characterising thin films and designing, modelling and
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nanofabrication process of thin-film lithium niobate photonics platform. The job Optimization of the nanofabrication process of thin-film lithium niobate photonics platform, which is one of the key platforms
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of Physics and Materials Science (DPhyMS) at the University of Luxembourg. This position is for a collaborative project which aims at understanding materials in highly efficient thin film photovoltaic devices.
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You carry out optical characterizations of thin-film photovoltaic materials using advanced photoluminescence spectroscopy and imaging methods. You optimize sensors for high-throughput analysis. You
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'noiseless' optical parametric amplifiers based on silicon nitride or thin-film lithium niobate intended for optical communication applications but also other emerging applications. Our research is both
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'noiseless' optical parametric amplifiers based on silicon nitride or thin-film lithium niobate intended for optical communication applications but also other emerging applications. Our research is both
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to study the electrocatalytic performance (activity, selectivity and stability) of oxide-derived and thin film Cu and Ag electrocatalysts during DAC-CO2 RR, develop innovative electrode