74 postdoc-catalysis-stability-density-functional-theory Postdoctoral positions at Argonne
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We invite you to apply for a Postdoctoral Appointee position within our Chemical Sciences and Engineering Division (CSE). In this role you will: Conduct research as part of a multidisciplinary team
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quantum mechanical calculations (e.g., first principles density functional theory (DFT)) to identify the structures and to understand the complex mechanisms of molecular reactions occurring at the surface
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candidates with a strong theoretical background in one or more subfields including topological materials, strongly correlated quantum systems, quantum dynamics, and quantum information theory. A particular
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are for two years, with the possibility of one additional year contingent upon funding and performance. Applications received by 29 November 2024 will receive our fullest consideration. The Theory Group has
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deposition (ALD). The project involves performing quantum mechanical calculations (e.g., first principles density functional theory (DFT)) to identify the structures and to understand the complex mechanisms
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are modified at the near field and how such a new system can enable optically addressable atomic memory with ultrahigh storage density. The successful candidate will be part of a highly collaborative research
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, including new solvents, additives, and salts, that offer enhanced thermodynamic and/or kinetic stability at electrode/electrolyte interfaces. The ultimate objective is to enable long-term cycling performance
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The Chemical Sciences and Engineering Division at Argonne National Laboratory is seeking a Postdoctoral Appointee to conduct innovative research focused on the synthesis, recycling, and performance
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physics, nuclear theory, nuclear data, accelerator R&D and operates the DOE Office of Nuclear Physics National User Facility, the Argonne Tandem-Linac Accelerator System (ATLAS). As an equal employment
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of Light Source data such as that from the Advanced Photon Source, Biology, Astronomy, and other science disciplines. This Postdoc will have a rare chance to work on exascale supercomputing systems and novel