Search Results - "Pandres, Elena P."

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  1. 1

    Optically oriented attachment of nanoscale metal-semiconductor heterostructures in organic solvents via photonic nanosoldering by Crane, Matthew J., Pandres, Elena P., Davis, E. James, Holmberg, Vincent C., Pauzauskie, Peter J.

    Published in Nature communications (30-10-2019)
    “…As devices approach the single-nanoparticle scale, the rational assembly of nanomaterial heterojunctions remains a persistent challenge. While optical traps…”
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    Journal Article
  2. 2

    Laser-Driven Growth of Semiconductor Nanowires from Colloidal Nanocrystals by Pandres, Elena P, Crane, Matthew J, Davis, E. James, Pauzauskie, Peter J, Holmberg, Vincent C

    Published in ACS nano (25-05-2021)
    “…Semiconductor nanowire production through vapor- and solution-based processes has propelled nanowire systems toward a wide range of technological applications…”
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    Journal Article
  3. 3

    Germanium Nanowire Battery Electrodes with Engineered Surface-Binder Interactions Exhibit Improved Cycle Life and High Energy Density without Fluorinated Additives by Pandres, Elena P, Olson, Jarred Z, Schlenker, Cody W, Holmberg, Vincent C

    Published in ACS applied energy materials (23-09-2019)
    “…Nanostructured Group-IV materials hold great promise as high-capacity alloying electrodes for electrochemical energy storage. However, in order to stabilize…”
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    Journal Article
  4. 4

    Synthesis, Assembly, and Integration of Semiconductor Nanowires by Pandres, Elena P

    Published 01-01-2020
    “…Semiconductor nanowires are a class of highly anisotropic crystalline materials with nanoscale diameters and lengths that range from micrometers to…”
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    Dissertation
  5. 5

    Laser-Driven Growth of Semiconductor Nanowires from Colloidal Nanocrystals via the Young-Laplace Effect by Pandres, Elena P, Crane, Matthew J, Davis, E. James, Pauzauskie, Peter J, Holmberg, Vincent C

    Published 17-07-2020
    “…The ability to produce nanowires through vapor- and solution-based processes has propelled nanowire material systems toward a wide range of technological…”
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    Journal Article