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, the assembled heterostructures will be characterized by optical methods at the C2N laboratory using Raman spectroscopy, polarized Raman spectroscopy, photoluminescence, and second harmonic generation
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Materials, Bioinspired Materials and Sustainable Materials. For more details, please view https://www.ntu.edu.sg/mse/research. The Research Fellow will undertake advanced research in the field of quantum
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. We aim to combine Raman spectroscopy, a powerful label-free analytical technique that measures the molecular composition of tissue by using light to excite molecular vibrations, with imaging techniques
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materials characterization (XRD, Raman, SEM-EDS, TGA, PSD, BET, ICP). Apply Design of Experiments (DoE) and statistical optimization tools to improve processes within the main project and across other ongoing
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) using Raman spectroelectrochemistry and an electrochemical quartz crystal microbalance (EQCM). • The nature of the formed films, as well as the impact of microstructural heterogeneities
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the previous task. - Secondary task: The candidat will contribute to the In-situ Raman scattering experiments also performed at ICGM using diamond anvil-cells for probing higher pressure P-T domain. The work in
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: - Develop original electrochemical/photoelectrochemical methodologies. - Conduct experimental work in electrochemistry. - Perform analyses (Electrochemistry, AFM, XPS, Raman, etc.). - Prepare a scientific and
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their research at interview. Additional Information Research role profiles and career pathways for research staff are available at: http://www.ncl.ac.uk/hr/recruitment/role-profiles.php For more about
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, spectroscopic, and surface characterization (e.g., Raman, XPS, SEM/TEM, electrochemical methods). Execution and analysis of electrocatalytic experiments related to NRR, NO3RR, and related reactions
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stimulated Raman transitions on free-falling 87Rb atoms. The phase shift of the atomic interferometer is proportional to g, the acceleration due to gravity, which we measure with a sensitivity greater than