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dynamics simulations to understand the growth mechanisms of thin films deposited by magnetron sputtering, with or without ion beam assistance (IBAS), particularly for metallic materials (Ag) and oxides (ZnO
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. Required Qualifications & Experience PhD in Materials Chemistry, Extractive Metallurgy, or Chemical Engineering with a focus on resource recovery or battery materials. Research experience in metal recovery
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the atomic-scale competition between copper and silicon at grain boundaries and oxide interfaces, delivering atomistic insights directly relevant to improving the recyclability and processability of both
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processing technologies for the recovery, recycling, and valorization of metallic systems relevant to advanced manufacturing and sustainable metallurgy applications. About the Job: The selected candidate will
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an emphasis on: High-temperature processing of metals and oxides for microstructural control; Microstructural and mechanical characterization of the materials developed and processed; Participation in outreach
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) under the following conditions: Work Plan: The fellow will develop research in the field of materials and devices for energy storage, with an emphasis on: High-temperature processing of metals and oxides
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of nitrogen (N) that can be fixed from the atmosphere, major nutrients such as potassium (K), silicon (Si), phosphorus (P) or minor nutrients such as metals (zinc, Zn; magnesium, Mg; calcium, Ca; boron, B
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characterization of transition metal dichalcogenides and related two-dimensional (2D) materials. The postdoctoral position is part of the National Science Foundation funded 2D Crystal Consortium (2DCC) Materials
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) or minor nutrients such as metals (zinc, Zn; magnesium, Mg; calcium, Ca; boron, B; molybdenum, Mo,…) are ultimately derived from the transformation of soil minerals into secondary phases such as cation-poor