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energy goals. ESIA also develops, deploy, and advance grid technologies that ensure a robust and secure U.S. grid transmission and distribution system. We collaborate with government agencies as
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. Proficiency in impedance spectroscopy and other advanced electrochemical diagnostics. Background in crystallography and structural analysis. Experience with situ, operando characterization and/or quantitative
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of catalysts using Infrared and X-ray Absorption Spectroscopies, as well as other advanced spectroscopic techniques Position Requirements Desired Qualifications Experience in the synthesis and evaluation
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A postdoc position is immediately available at the Advanced Photon Source of Argonne National Laboratory. The postdoctoral appointee will develop ultrafast microscale photonics and MEMS
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the opportunity to contribute to advanced research in ion transport and separations, with an emphasis on structural and chemical characterization techniques to assess ion permeability and ion-ion selectivity. Key
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the U.S. achieve energy goals. ESIA develops, deploy, and advances grid technologies that ensures a robust and secure U.S. grid transmission and distribution system. ESIA also collaborates with government
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science Considerable knowledge of probing interfacial reactivity through in-situ and operando approaches. This can include synchrotron-based x-ray scattering techniques to probe structure and reactivity
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experiments. Develop reinforcement learning models to improve gate fidelity. Leverage CNM’s state-of-the-art facilities, including the nanofabrication cleanroom and the Quantum Matter and Device Lab’s dilution
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advanced computing, optimization, and data analytics technologies. The postdoctoral researcher will work with a team of researchers on solving challenging problems using optimization, stochastic models
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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