At PNNL, our core capabilities are divided among major departments that we refer to as Directorates within the Lab, focused on a specific area of scientific research or other function, with its own leadership team and dedicated budget. Our Science & Technology directorates include National Security, Earth and Biological Sciences, Physical and Computational Sciences, and Energy and Environment. In addition, we have an Environmental Molecular Sciences Laboratory, a Department of Energy, Office of Science user facility housed on the PNNL campus. The Physical and Computational Sciences Directorate's (PCSD’s) strengths in experimental, computational, and theoretical chemistry and materials science, together with our advanced computing, applied mathematics and data science capabilities, are central to the discovery mission we embrace at PNNL. But our most important resource is our people—experts across the range of scientific disciplines who team together to take on the biggest scientific challenges of our time. The Physical Sciences Division stewards discovery science research portfolios including catalysis, materials science, separations, analytical chemistry, geosciences, and chemical physics. Our research strives to refine our molecular-level understanding of multiphase systems and phenomena including complex interfaces. We discover and apply new knowledge to address major national priorities and needs in energy sustainability through the development of new energy storage technologies and the creation of high-value fuels and materials from abundant wastes. Contribute to PNNL’s goals in understanding the complex systems and phenomena vital to the nation's energy and environmental resources as part of the Lab’s Physical Sciences Division (PSD). As a PhD Intern in the Geochemistry group, you will work with other experienced researchers to develop and perform benchtop and hydrothermal liquid–rock reactions to study metal ion interaction, incorporation and distribution in natural and synthetic minerals to delineate their dissolution, nucleation, growth, and crystallization—and to use various wet chemical and optical spectroscopy techniques, such as Raman, FTIR, with complementary microscopy and elemental analysis (e.g., XRD/SAXS, DLS, SEM/TEM, AFM, ICP). Your research results will help advancing DOE missions in critical minerals, environmental cleanup, and sustainable materials. If you are ready to expand your training in Geochemistry, Environmental Science, Materials, Chemical Engineering, and/or Chemistry and hone your skills as a PhD intern at a national laboratory widely recognized for its work in the physical sciences and environmental science, we want to connect with you. The ideal person has an interest in advancing measurement approaches and applying them to complex problems.
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Job Type
Full-time
Career Level
Intern
Education Level
Ph.D. or professional degree