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purification of electrode or electrolyte systems and evaluation of their battery performance. The program will have a strong collaborative component with characterization (e.g. electron microscopy
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/ expertise with quadrupole and time-of-flight-based inductively coupled plasma – mass spectrometry (ICP-MS) instrumentation and non-mass spectrometric approaches including scanning electron microscopy, dynamic
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user community access to expertise and equipment for a broad range of nanoscience research, including nanomaterials synthesis, nanofabrication, imaging/microscopy/characterization, and theory/modeling
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materials laboratories, including optical microscopy, specimen polishing, thermal and mechanical testing, and control of radioactive sample inventory. Conduct mechanical testing and other characterization and
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. Collaborate with researchers outside of our group from diverse backgrounds, within and external to ORNL, including condensed matter theorists and scientists performing device design and fabrication, microscopy
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/or limited-angle reconstruction and published research in this area. Experience applying ML/AI algorithms to scientific imaging data (e.g., CT, microscopy, multi-modal datasets). A strong record of
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thermal analysis (DSC/TGA). Hands-on experience in materials characterization using tools such as particle size analysis, optical microscope, scanning electron microscopy, X-ray diffraction. Strong