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U.S. Department of Energy (DOE) | Washington, District of Columbia | United States | about 13 hours ago
, other departments and agencies, state governments, and Congress. The Scholar will gain hands-on experience on data projects, participate in learning and development opportunities, be actively mentored by
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Research FieldPhysicsYears of Research ExperienceNone Research FieldTechnologyYears of Research ExperienceNone Additional Information Eligibility criteria - Hold a PhD in polymer chemistry - Have solid
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(physics, Earth sciences, biology, chemistry, computer science, etc.). It addresses a wide range of experimental and theoretical research topics, such as elucidating the structure of materials and
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postdoctoral researcher to develop and deploy coupled X-ray computed laminography and X-ray diffraction methods for non-destructive 3D analysis of solid-state battery pouch cells. The role is embedded within
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structure of MOF structures will be used (particle size, specific surface area, pore size and distribution, solid state analysis, etc.) as well as for characterizing the adsorption and degradation of toxic
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utilized in MOF synthesis. The material synthesis will involve wet chemistry and other well-established solid-state methods. Required qualifications: The candidate must hold a PhD degree in Materials Science
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concerning the local coordination environments and oxidation states of As, and even less for Bi & W. These objectives will be achieved using fine mineralogy and crystal chemistry techniques combining X-ray
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is the state’s oldest, largest, and most comprehensive land grant university with an enrollment of over 50,000 students and was ranked 6th in the country among public universities (US News and World
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for photocatalytic CO2 conversion and water splitting. Materials synthesis will involve wet chemistry and known solid-sate methods such as mechanochemical or pyrolysis. Required qualifications: The candidates must
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Project Description We invite applications for a postdoctoral position in experimental mass spectrometry-based proteomics, focused on peptide ionization, charge state behavior, and fragmentation