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development of next-generation AI approaches. The successful candidate will perform quantum mechanical calculations to investigate catalytic active sites and reaction mechanisms in heterogeneous catalytic
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or battery materials testing is recommended but not required. The candidate will design or modify laboratory procedures and protocols, develop experimental designs, run technical experiments, make detailed
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opportunity for an early-career researcher to contribute to cutting-edge energy storage research focused on developing advanced diagnostic tools for aqueous battery systems. In this role, you will help develop
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nitrogen-vacancy (NV) diamond quantum magnetometry for high-energy physics experiments. The HEP Division performs cutting-edge research leveraging advanced detector development, high-performance computing
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research on advanced nanomaterials for polymer, metal, and ceramic composite systems. The successful candidate will develop scalable processing approaches for incorporating one-dimensional (1D) and two
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The Chemical and Fuel Cycle Technologies division is seeking a Postdoctoral Appointee to join a multidisciplinary team developing electrochemical reactions and processes in molten salt electrolytes
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collaborators, and other national laboratories, the successful candidate will develop and apply transparent, parameterized models of mineral extraction, concentration, refining, chemical conversion, battery
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of hydrometallurgical processes such as leaching, solvent (liquid-liquid) extraction, and adsorption; evaluating process performance and operability; developing test plans and standard operating procedures; assisting
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scientific discovery. Research areas include solid-state batteries with lithium and sodium metal anodes, as well as the morphology evolution of materials coupled with electrochemical and mechanical phenomena
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Directed Research and Development (LDRD) project. This research focuses on understanding how critical elements are distributed at mineral-water interfaces, with the goal of revealing the fundamental chemical