Search Results - "Mulvey, Justin T."

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  1. 1

    Toward Imaging Defect-Mediated Energy Transfer between Single Nanocrystal Donors and Single Molecule Acceptors by Lustig, Danielle R., Nilsson, Zach N., Mulvey, Justin T., Zang, Wenjie, Pan, Xiaoqing, Patterson, Joseph P., Sambur, Justin B.

    Published in Chemical & biomedical imaging (22-05-2023)
    “…Defect-mediated energy transfer is an energy transfer process between midgap electronic states in a semiconductor nanocrystal (NC) and molecular acceptors,…”
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    Journal Article
  2. 2

    Observation of Liquid–Liquid-Phase Separation and Vesicle Spreading during Supported Bilayer Formation via Liquid-Phase Transmission Electron Microscopy by Rizvi, Aoon, Mulvey, Justin T, Patterson, Joseph P

    Published in Nano letters (22-12-2021)
    “…Liquid-phase transmission electron microscopy (LP-TEM) enables the real-time visualization of nanoscale dynamics in solution. This technique has been used to…”
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    Journal Article
  3. 3

    A Close Look at Molecular Self-Assembly with the Transmission Electron Microscope by Rizvi, Aoon, Mulvey, Justin T, Carpenter, Brooke P, Talosig, Rain, Patterson, Joseph P

    Published in Chemical reviews (24-11-2021)
    “…Molecular self-assembly is pervasive in the formation of living and synthetic materials. Knowledge gained from research into the principles of molecular…”
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    Journal Article
  4. 4

    Electrically Fueled Active Supramolecular Materials by Selmani, Serxho, Schwartz, Eric, Mulvey, Justin T, Wei, Hong, Grosvirt-Dramen, Adam, Gibson, Wyeth, Hochbaum, Allon I, Patterson, Joseph P, Ragan, Regina, Guan, Zhibin

    Published in Journal of the American Chemical Society (04-05-2022)
    “…Fuel-driven dissipative self-assemblies play essential roles in living systems, contributing both to their complex, dynamic structures and emergent functions…”
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    Journal Article
  5. 5

    Characterizing the Ligand Shell Morphology of PEG-Coated ZnO Nanocrystals Using FRET Spectroscopy by Lustig, Danielle R., Buz, Enes, Mulvey, Justin T., Patterson, Joseph P., Kittilstved, Kevin R., Sambur, Justin B.

    Published in The journal of physical chemistry. B (19-10-2023)
    “…Poly­(ethylene glycol) (PEG) ligands can inhibit proteins and other biomolecules from adhering to underlying surfaces, making them excellent surface ligands…”
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    Journal Article
  6. 6

    Role of Molecular Modification and Protein Folding in the Nucleation and Growth of Protein–Metal–Organic Frameworks by Carpenter, Brooke P., Talosig, A. Rain, Mulvey, Justin T., Merham, Jovany G., Esquivel, Jamie, Rose, Ben, Ogata, Alana F., Fishman, Dmitry A., Patterson, Joseph P.

    Published in Chemistry of materials (27-09-2022)
    “…Metal–organic frameworks (MOFs) are a class of porous nanomaterials that have been extensively studied as enzyme immobilization substrates. During in situ…”
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    Journal Article
  7. 7

    CryoEM reveals the complex self-assembly of a chemically driven disulfide hydrogel by Hurst, Paul Joshua, Mulvey, Justin T, Bone, Rebecca A, Selmani, Serxho, Hudson, Redford F, Guan, Zhibin, Green, Jason R, Patterson, Joseph P

    Published in Chemical science (Cambridge) (17-01-2024)
    “…Inspired by the adaptability of biological materials, a variety of synthetic, chemically driven self-assembly processes have been developed that result in the…”
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    Journal Article
  8. 8

    3D Visualization of Proteins within Metal–Organic Frameworks via Ferritin‐Enabled Electron Microscopy by Dhaoui, Rakia, Cazarez, Saira L., Xing, Li, Baghdadi, Elmira, Mulvey, Justin T., Idris, Nehal S., Hurst, Paul J., Vena, M. Paula, Palma, Giuseppe Di, Patterson, Joseph P.

    Published in Advanced functional materials (01-03-2024)
    “…Electron tomography holds great promise as a tool for investigating the 3D morphologies and internal structures of metal‐organic framework‐based protein…”
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    Journal Article
  9. 9

    Correlating electrochemical stimulus to structural change in liquid electron microscopy videos using the structural dissimilarity metric by Mulvey, Justin T, Iyer, Katen P, Ortega, Tomàs, Merham, Jovany G, Pivak, Yevheniy, Sun, Hongyu, Hochbaum, Allon I, Patterson, Joseph P

    Published in Ultramicroscopy (01-03-2024)
    “…In-situ liquid cell transmission electron microscopy (LCTEM) with electrical biasing capabilities has emerged as an invaluable tool for directly imaging…”
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    Journal Article
  10. 10
  11. 11

    Observing the Dynamics of an Electrochemically Driven Active Material with Liquid Electron Microscopy by Gibson, Wyeth, Mulvey, Justin T., Das, Swetamber, Selmani, Serxho, Merham, Jovany G., Rakowski, Alexander M., Schwartz, Eric, Hochbaum, Allon I., Guan, Zhibin, Green, Jason R., Patterson, Joseph P.

    Published in ACS nano (07-05-2024)
    “…Electrochemical liquid electron microscopy has revolutionized our understanding of nanomaterial dynamics by allowing for direct observation of their…”
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    Journal Article
  12. 12
  13. 13

    Understanding the Nucleation and Growth of ZIF‑8 Polymorphs by Talosig, A. Rain, Wang, Fangni, Mulvey, Justin T., Carpenter, Brooke P., Olivas, Elisa M., Katz, Benjamin B., Zhu, Chenhui, Patterson, Joseph P.

    Published in Crystal growth & design (15-05-2024)
    “…Polymorphism is an important concept in crystallization and has been widely studied for many systems, including calcium carbonate and zeolite materials…”
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    Journal Article
  14. 14

    Deterministic Image Analysis for In Situ Transmission Electron Microscopy by Mulvey, Justin T

    Published 01-01-2024
    “…In situ transmission electron microscopy enables the study of nanoscale solution state events such as battery electrode deposition and molecular self-assembly…”
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    Dissertation
  15. 15

    Approaching Rapid, High‐Resolution, Large‐Area Patterning of Semiconducting Polymers Using Projection Photothermal Lithography by Murrey, Tucker L., Mulvey, Justin T., Jha, Meghna, Fergerson, Alice S., Vong, Daniel, Soika, Andreas, Lorek, Jakob, Dolan, Sarah E., Tiffany‐Appleton, Daniel R., Moulé, Adam J.

    Published in Advanced materials technologies (01-06-2022)
    “…Patterned semiconductors are essential for the fabrication of nearly all electronic devices. Over the last two decades, semiconducting polymers (SPs) have…”
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    Journal Article