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    Photo/Electroactive Functional Materials for Navy Applications

    Develop new photo/electroactive materials for Navy applications like energy and water treatment, using advanced spectroscopies to study energy transfer and reactions.

    This grant is no longer accepting proposals

    NRC Research Associateship Programs has archived this opportunity.

    Funder: NRC Research Associateship Programs

    Due Dates: May 1, 2025 (Next deadline)

    Funding Amounts: $99,200 stipend plus $3,000 travel allowance; relocation assistance available for eligible awardees.

    Summary: Postdoctoral fellowship to develop photo/electroactive functional materials for Navy applications using advanced spectroscopic and electrochemical methods.

    Key Information: Open to U.S. citizens and permanent residents; requires Ph.D. earned within last 5 years; research conducted on-site at Naval Research Laboratory in Washington, DC.


    Description

    This fellowship opportunity at the Naval Research Laboratory (NRL) supports postdoctoral researchers in developing new photo/electroactive functional materials for Navy-relevant applications. Research focuses on understanding mechanisms of energy transfer, redox processes, and chemical transformations (bond-breaking and bond-forming) occurring on nanosecond to millisecond timescales. Areas of application include clean energy production (fuel cells, energy storage devices, electrolyzers), water treatment technologies, photo- and electrocatalysis, and plasmonics.

    Candidates will leverage steady-state and time-resolved spectroscopies (UV-vis, fluorescence, IR, Raman), photothermal methods, electrochemistry, electrochemical impedance spectroscopy, NMR, X-ray photoelectron spectroscopy, X-ray diffraction, electron microscopy, porosimetry, and thermal gravimetry analysis. Successful applicants should have experience in photochemistry/photophysics and additional expertise in organic/inorganic synthesis, materials chemistry, or electrochemistry.

    The program provides access to state-of-the-art facilities and mentorship at NRL, enabling research that advances both fundamental understanding and practical solutions for Navy challenges.

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