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Template-Stripped Tunable Plasmonic Devices on Stretchable and Rollable Substrates.

Daehan Yoo1, Timothy W Johnson1, Sudhir Cherukulappurath1

  • 1Department of Electrical and Computer Engineering, University of Minnesota , Minneapolis, Minnesota 55455, United States.

ACS Nano
|September 25, 2015
PubMed
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Template stripping integrates metallic nanostructures onto flexible and stretchable substrates. This method enables tunable optical properties for advanced applications in plasmonics and sensing.

Area of Science:

  • Materials Science
  • Nanotechnology
  • Optics

Background:

  • Integrating metallic nanostructures onto flexible substrates is crucial for advanced applications.
  • Existing methods often face limitations in scalability and substrate compatibility.
  • Developing versatile techniques for fabricating nanostructured surfaces on diverse materials is essential.

Purpose of the Study:

  • To develop a template stripping method for integrating metallic nanostructures onto flexible, stretchable, and rollable substrates.
  • To demonstrate the tunability of optical properties in these nanostructured films through mechanical deformation.
  • To showcase the applicability of the technique for fabricating nonplanar nanostructures.

Main Methods:

  • Utilized template stripping with reusable silicon templates to transfer patterned metals.
Keywords:
metasurfacenanohole arraynanoplasmonicspyramidal tipsroll-to-roll fabricationroller nanoimprint lithographystretchable devicestemplate stripping

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  • Fabricated stretchable gold nanohole arrays and gold pyramid arrays on polydimethylsiloxane (PDMS) substrates.
  • Employed a flexible transfer layer for roller template stripping onto cylindrical surfaces.
  • Main Results:

    • Successfully integrated high-quality metallic nanostructures (nanoholes, nanodisks, wires, pyramids) onto flexible and stretchable PDMS.
    • Demonstrated modulation of optical transmission spectra in nanohole arrays via mechanical stretching.
    • Showcased modulation of resonant light scattering wavelengths from pyramid tips upon stretching.
    • Achieved roller template stripping of various nanostructures onto cylindrical substrates.

    Conclusions:

    • Template stripping is an effective method for creating flexible, stretchable, and rollable metallic nanostructures.
    • The fabricated nanostructures exhibit tunable optical properties, opening possibilities for responsive devices.
    • This technique facilitates applications in sensing, displays, plasmonics, metasurfaces, and roll-to-roll fabrication.