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characterization with atomic-scale electron microscopy, and heterogeneous catalytic testing. In addition, we use and contribute to international research facilities using x-rays, e.g. MAX IV and ESRF, and neutrons
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, structural characterization with atomic-scale electron microscopy, and heterogeneous catalytic testing. In addition, we use and contribute to international research facilities using x-rays, e.g. MAX IV and
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control over size and crystallinity, and solid-state analysis by single crystal X-ray and electron diffraction. The successful candidate will also be expected to contribute to the formulation and submission
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techniques (e.g. NMR, IR, UV-vis spectroscopy, Mass spectrometry, and X-ray diffraction) necessary for characterizing new molecules and polymers. Experience with photochemistry (e.g. quantum yield analysis
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elucidation of atomic and electronic structures, and physical properties. The group is in possession of state-of-the-art diffraction instrumentation and single-crystal electron and X-ray crystallography, and
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Qualifications: Basic understanding of x-ray or neutron scattering is desirable but not essential. Experience in magnetic studies under high magnetic fields. Ability to work within a multi-disciplinary team
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, Astronomy, and Biology. The UTEP Department of Chemistry boasts a range of advanced equipment and technology, including NMR spectrometers (600 MHz and 300 MHz), X-ray single crystal diffractometer, XPS, AFM