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Showing 1 to 5 of 5 for “"Epitaxial lift-off"”.

  1. Electrodeposition of Epitaxial Wide Bandgap P-Type Semiconductors and Copper Metal for Energy Conversion and Flexible Electronics

    <p>"Epitaxial electrodeposition is a simple, low-cost technology to produce highly ordered materials on single-crystal surfaces. This research focuses on the epitaxial electrodeposition of wide bandgap p-type semiconductors and epitaxial Cu thin films via a self-assembled monolayer for energy …

    must-thes Repository record for Electrodeposition of Epitaxial Wide Bandgap P-Type Semiconductors and Copper Metal for Energy Conversion and Flexible Electronics (opens in a new tab)

  2. Electrodeposition of epitaxial metal thin films on silicon for energy conversion and flexible electronics

    <p>"This research focuses on epitaxial electrodeposition of two coinage metals: Au and Ag thin films on the silicon surface and their applications in flexible electronics and energy conversion and storage. The first paper: <em>Photoelectrochemistry of ultrathin, semi-transparent, and catalytic gold …

    must-thes Repository record for Electrodeposition of epitaxial metal thin films on silicon for energy conversion and flexible electronics (opens in a new tab)

  3. Graphene-Assisted gan membranes formation /

    … strategies for thin inorganic films include epitaxial lift-off techniques using a chemically etched sacrificial layer, optically induced separation between the epilayer and substrate, brute-force mechanical spalling using a metal stressor layer, and two-dimensional (2D) material-assisted …

    vilnius Repository record for Graphene-Assisted gan membranes formation / (opens in a new tab)