Search Results - "Sharp, Marcus A."

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    Adsorption of ethane, ethene, and ethyne on reconstructed Fe3O4(001) by Lee, Christopher J., Sharp, Marcus A., Smith, R. Scott, Kay, Bruce D., Dohnálek, Zdenek

    Published in Surface science (01-12-2021)
    “…•Coverage-dependent desorption kinetics of ethane, ethene, and ethyne is measured on the reconstructed Fe3O4(001).•Ethene and ethyne exhibit stronger binding…”
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    Journal Article
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  3. 3

    The evolution of model Rh/Fe3O4(001) catalysts in hydrogen environments by Mahapatra, Mausumi, Sharp, Marcus A., Lee, Christopher J., Zhu, Yifeng, Gutiérrez, Oliver Y., Kay, Bruce D., Dohnálek, Zdenek

    Published in Surface science (01-01-2025)
    “…•The atomically dispersed Rh adatoms and in-surface octahedrally-coordinated Rh species on Fe3O4(001) do not dissociate H2 at 300 K.•Metallic Rh clusters…”
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    Dynamic Activation of Single-Atom Catalysts by Reaction Intermediates: Conversion of Formic Acid on Rh/Fe3O4(001) by Lee, Christopher J., Sharp, Marcus A., Jackson, Benjamin A., Mahapatra, Mausumi, Raugei, Simone, Árnadóttir, Líney, Lee, Mal-Soon, Kay, Bruce D., Dohnálek, Zdenek

    Published in ACS catalysis (18-10-2024)
    “…The stability and activity of supported single-atom catalysts (SACs) represent critical yet opposing factors limiting our ability to explore and exploit their…”
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  6. 6

    Preparation and Characterization of Model Homotopic Catalysts: Rh Adatoms, Nanoparticles, and Mixed Oxide Surfaces on Fe3O4(001) by Sharp, Marcus A., Lee, Christopher J., Mahapatra, Mausumi, Smith, R. Scott, Kay, Bruce D., Dohnálek, Zdenek

    Published in Journal of physical chemistry. C (01-09-2022)
    “…The atomic-level characterization of active sites is essential to understanding the mechanisms behind catalytic reactions. In this study, using scanning…”
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    Journal Article