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Showing 1 to 8 of 8 for “"Solid-state superionic stamping (S4)"”.

  1. Further analysis of solid state superionic stamping for nanoscale fabrication

    … the electrochemical nano-imprint process called solid state superionic stamping (S4) using AgIAgPO& glass as the solid electrolyte to pattern and transfer nanostructures on the silver. This technology is economically low-cost, high efficiency, and environmentally friendly. The whole process will …

    uiuc Repository record for Further analysis of solid state superionic stamping for nanoscale fabrication (opens in a new tab)

  2. Stop-flow lithography and its application to graphical encoding

    … Another project covered in this thesis is called solid-state superionic stamping (S4). It is a direct patterning technique for metals, featuring one-step, large fabrication area, low cost and working in ambient conditions. This technique is complementary to SFL in the sense that it enlarges …

    mit Repository record for Stop-flow lithography and its application to graphical encoding (opens in a new tab)

  3. Scalable direct electrochemical nanopatterning of silver films

    … optics and chemical sensing applications. Solid-State Superionic Stamping (S4) is an electrochemical nano-imprinting process that is capable of directly patterning silver nanostructures. In this thesis, we demonstrate a simple method to scale up S4 patterning of silver using a plate-to-roll …

    uiuc Repository record for Scalable direct electrochemical nanopatterning of silver films (opens in a new tab)

  4. Nonlithographic manufacturing of 1-D silicon nanostructures with tunable surface morphology via thermal dewetting and metal-assisted chemical etching

    … above. Instead, silver patterns are created by Solid-State Superionic Stamping (S4), a non-lithographic and ambient method for patterning silver thin-films, and combined with the lift-off and MacEtch processes to produce such complex nanostructures. Sub-160 nm nanostructures were produced by …

    uiuc Repository record for Nonlithographic manufacturing of 1-D silicon nanostructures with tunable surface morphology via thermal dewetting and metal-assisted chemical etching (opens in a new tab)

  5. Solid state superionic stamping design for large area patterning

    Solid state superionic stamping (S4) is a non-photolithographic process for etching features into thin metal films which has shown the capability of reproducing features below 100 nm in recent years. The technique has significant potential because in addition to its high resolution capability it is …

    uiuc Repository record for Solid state superionic stamping design for large area patterning (opens in a new tab)

  6. Solid state electrochemical processes for nanofabrication

    … these challenges, this thesis primarily examines solid state nano manufacturing pathways using ion conductive solid electrolytes, to develop a cost effective, simple alternative to state of the art direct writing techniques (e.g. Ebeam lithography and Focus ion beam lithography). First, a solid

    uiuc Repository record for Solid state electrochemical processes for nanofabrication (opens in a new tab)

  7. Solid-state superionic stamping: Patterning 3D metallic micro- and nanostructures for surface enhanced Raman sensing

    … scalable manufacturing process using superionic conductors, known as Solid-State Superionic Stamping (S4), for the selective etching of silver and copper. S4 is a single-step, highly scalable, all solid-state process that can be performed under ambient conditions, offering high …

    uiuc Repository record for Solid-state superionic stamping: Patterning 3D metallic micro- and nanostructures for surface enhanced Raman sensing (opens in a new tab)

  8. Solid-state superionic conductors for advanced nanoscale fabrication

    … equipment. This work examines the use of the solid electrolyte glass silver iodide-silver metaphosphate (AgIAgPO3) as a pathway for nanoscale patterning of silver using simple processing. AgIAgPO3 was chosen as an ideal candidate solid ionic conductor because it is optically transparent, has a …

    uiuc Repository record for Solid-state superionic conductors for advanced nanoscale fabrication (opens in a new tab)