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partially ordered systems. Particular use is made of X-ray and neutron diffraction, cryo-EM, and a wide range of other biophysical techniques. The group is located in close proximity to the MAX-IV and ESS
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microscopy of materials and nanostructures for electronics. This capability at Argonne’s Center for Nanoscale Materials enables imaging of electrically driven dynamics with simultaneous nanometer-scale spatial
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perform advanced synchrotron experiments to probe structural, chemical, and dynamic evolution of defects in thin films and heterostructures. Utilize techniques such as Bragg coherent diffraction imaging
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techniques, including atomic imaging of surfaces and bulk, nano-probe diffraction (4D-STEM), high-energy-resolution, and valence-level energy-loss spectroscopy, cryogenic microscopy, Lorentz microscopy and
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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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“Revealing Order in Organic Semiconductors with Cryo-Electron Microscopy.” The successful candidate will apply and develop advanced cryo-electron diffraction and imaging methods to uncover structure–property
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DTU Tenure Track Researcher on Nanoreactors for Operando Visualizations of Nanoparticle Catalysis...
experience with TEM techniques including aberration-corrected high-resolution imaging, diffraction, ETEM, EFTEM and EELS. It is critical, that you have command of these TEM techniques under the lowest possible
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addition, you must have comprehensive experience with TEM techniques including aberration-corrected high-resolution imaging, diffraction, ETEM, EFTEM and EELS. It is critical, that you have command