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Field
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the electronic, magnetic, and optical properties of 2D materials at ultrafast timescales, which holds promises for developing new energy technologies. The candidate is responsible for conceiving, planning, and
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solutions for pressing societal challenges (e.g. communication, artificial intelligence, climate protection, health, etc.) through modern electronic & photonic technologies. The work covers the entire
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designing, performing, and analyzing catalytic reactions. Experience in surface organometallic chemistry Experience in oxide synthesis and characterization (such as gas absorption and powder x-ray diffraction
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and near-infrared wavelength range by fabricating parabolic and elliptical GRIN microlenses, axicons, diffractive optical elements (DOEs), and birefringent artificial glass materials. The aim of using
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plasma-assisted CVD techniques; - Knowledge of characterization techniques: Raman spectroscopy, scanning electron microscopy, atomic force microscopy, X-ray diffraction, etc.; - Knowledge of vacuum
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, morphological, chemical, and magnetic property characterization of permanent magnets (Nd-Fe-B) via TEM (EDS, EELS, HR(S)TEM, electron diffraction) and XPS. In situ TEM study (under heating and irradiation
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understanding of ferroelectrics, especially in thin film form. Experience in Python and/or Matlab. Experience in materials characterization techniques such as Raman, X-ray diffraction, and scanning electron
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and intercellular transport using X-ray crystallography, cryo-electron microscopy (cryo-EM), microcrystal electron diffraction (microED), and small-angle X-ray scattering (SAXS). The Postdoctoral
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properties. Surface characterization will be carried out using techniques such as optical microscopy, scanning electron microscopy (SEM), X-ray photoelectron spectroscopy (XPS), and X-ray diffraction (XRD
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to work in a dynamic and collaborative research team environment. Experience working in and applying safety practices in an industrial/manufacturing workspace or lab. Experience working with electronic