Search Results - "Pompetti, Nicholas F"

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  1. 1

    Enhancing NIR-to-visible upconversion in a rigidly coupled tetracene dimer: approaching statistical limits for triplet-triplet annihilation using intramolecular multiexciton states by Gilligan, Alexander T, Owens, Raythe, Miller, Ethan G, Pompetti, Nicholas F, Damrauer, Niels H

    Published in Chemical science (Cambridge) (24-01-2024)
    “…Important applications of photon upconversion through triplet-triplet annihilation require conversion of near-IR photons to visible light. Generally, however,…”
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    Journal Article
  2. 2

    Tetracene Diacid Aggregates for Directing Energy Flow toward Triplet Pairs by Pompetti, Nicholas F., Smyser, Kori E., Feingold, Benjamin, Owens, Raythe, Lama, Bimala, Sharma, Sandeep, Damrauer, Niels H., Johnson, Justin C.

    Published in Journal of the American Chemical Society (12-04-2024)
    “…A comprehensive investigation of the solution-phase photophysics of tetracene bis-carboxylic acid [5,12-tetracenepropiolic acid (Tc-DA)] and its related methyl…”
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  3. 3

    Photocatalytic C–F bond activation in small molecules and polyfluoroalkyl substances by Liu, Xin, Sau, Arindam, Green, Alexander R., Popescu, Mihai V., Pompetti, Nicholas F., Li, Yingzi, Zhao, Yucheng, Paton, Robert S., Damrauer, Niels H., Miyake, Garret M.

    Published in Nature (London) (20-11-2024)
    “…Organic halides are highly useful compounds in chemical synthesis, where the halide serves as a versatile functional group for elimination, substitution, and…”
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  4. 4

    Controlling Electronic Coupling of Acene Chromophores on Quantum Dot Surfaces through Variable-Concentration Ligand Exchange by Martinez, Marissa S., Nolen, Michelle A., Pompetti, Nicholas F., Richter, Lee J., Farberow, Carrie A., Johnson, Justin C., Beard, Matthew C.

    Published in ACS nano (08-08-2023)
    “…Controlling the binding of functional organic molecules on quantum dot (QD) surfaces and the resulting ligand/QD interfacial structure determines the resulting…”
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  5. 5

    Mechanistic Investigation of a Photocatalyst Model Reveals Function by Perylene-Like Closed Shell Super-Photoreductant Capable of Reducing Unactivated Arenes by Sau, Arindam, Pompetti, Nicholas F., Green, Alexander R., Popescu, Mihai V., Paton, Robert S., Miyake, Garret M., Damrauer, Niels H.

    Published in ACS catalysis (16-02-2024)
    “…Benzo­[ghi]­perylene monoimides (BPIs) have recently been employed as organic photocatalysts for challenging reductions. In probing their function, we identify…”
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    Journal Article