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analytical techniques including electron back scatter diffraction (EBSD) to link the electrochemical performance of the electrode with the surface structure and chemistry. Materials of interest will include
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characterization using diffraction and microscopy techniques Use of advanced research infrastructure, including synchrotron and neutron facilities or high-magnetic field laboratories The PhD project includes
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to a deeper understanding of material behaviors, paving the way for the development of next-generation high-performance materials. For more details, please view https://www.ntu.edu.sg/mse/research and
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measurements at cryogenic temperatures Structural and microstructural characterization using diffraction and microscopy techniques Use of advanced research infrastructure, including synchrotron and neutron
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undergo comprehensive material characterization to assess layer quality through techniques such as high-resolution X-ray diffraction (HRXRD), X-ray photoelectron spectroscopy (XPS), ellipsometry, atomic
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, NMR spectroscopy (e.g., 1H, 11B, 15N NMR of liquid solutions), X-ray diffraction, ICP-OES, in situ diffuse reflectance infrared spectroscopy (DRIFTS), temperature programmed desorption, probe molecule
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Posting Summary Logo Posting Number RTF00239PO25 USC Market Title Post Doctoral Fellow Link to USC Market Title https://uscjobs.sc.edu/titles/156387 Business Title (Internal Title) Postdoctoral
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Posting Summary Logo Posting Number RTF00239PO25 USC Market Title Post Doctoral Fellow Link to USC Market Title https://uscjobs.sc.edu/titles/156387 Business Title (Internal Title) Postdoctoral
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/diffraction imaging in relativistic laser-induced plasma (BISER mechanism) using a broadband coherent X-ray source based on high-power (multi-TW, PW) femtosecond lasers. The research encompasses experiments