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technology integrated into the latest supercomputers, unique opportunities exist to significantly improve the time-to-solution for monitoring emerging pathogen variants. Our group has made several novel
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, degradation mechanisms, and electrochemical performance, utilizing a variety of synthesis techniques and advanced structural and electrochemical characterization methods. The appointee will work closely with
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-sensitive catalyst materials Experience with the design and construction of batch and flow reactors for catalysis Proficiency with analytical techniques such as X-ray absorption spectroscopy, nuclear magnetic
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diffraction characterization and related structural characterization techniques. Strong teamwork skills with a demonstrated history of effectively collaborating with team members and internal and external
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functional assemblies at transparent and electrically conductive interfaces. We will also leveraging recent advances in vapor phase infiltration synthesis that enable electronic and atomic structures
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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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fundamental understanding of reaction mechanisms in molten salts and apply insights to process development and scale up. Project activities will include the design and development of online monitoring tools
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to energy conversion. The research involves exploring the excited-state structural dynamics and mechanisms of photoinduced energy and charge transfer across a wide spectrum of systems, including small
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characterization Extensive knowledge of solid-state materials synthesis and use of structure construction software such as Materials Studio, Crystalmaker, Mercury, VESTA, etc. Knowledge of inorganic and nanomaterial
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) applications. This research aims to advance the fundamental understanding of quantum emitters by investigating their atomic structures and correlating them with optical properties. Emission dynamics will be