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energy efficient devices. The postdoctoral candidate will be a part of highly collaborative research team focusing on integration of 2D materials with ultrawide bandgap semiconductor materials such as
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conventional and alternative energy sources, for enhanced performance and reduced emissions. One postdoc position is now open for candidates with expertise and experience in process modeling (preferably using
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is required. Collaborative skills, including the ability to work well with other divisions, laboratories, and universities. Ability to demonstrate strong written and oral communication skills. Ability
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. Hands-on experience working at beamlines at synchrotron facilities. Strong communication skills for working in a multidisciplinary team environment. Ability to synthesize research findings into work
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) year, with the possibility of extension for up to three (3) years, depending on funding and performance. Interested applicants should be prepared to arrange for three letters of reference to be provided
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analyze the results with the goal of quantifying the fundamental fluid mechanics of the systems and will work with computational modelers to develop a better understanding of the injection and breakup
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. Ability to model Argonne’s core values of impact, safety, respect, integrity, and teamwork. The candidate is expected to think and work independently as well as in a large team to conduct research in a
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of multi-fidelity models in materials science leveraging advances in artificial intelligence and exascale computing. The postdoctoral researcher will work on development of interpretable and efficient
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electrolysis, CO2 electrolysis and fuel cells. Experimental work will involve design, characterization, and degradation studies of model interfaces that can help elucidate their degradation mechanisms and
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This position will be dedicated to research projects aiming to unravel the fundamental interfacial processes in materials employed in CO2 electrolyzers. Experimental work will involve design