4.8 Article

Roll-to-Roll Nanoforming of Metals Using Laser-Induced Superplasticity

Journal

NANO LETTERS
Volume 18, Issue 6, Pages 3616-3622

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/acs.nanolett.8b00714

Keywords

Nanoforming; nanomanufacturing; roll-to-roll; CO2 laser; plasmonics; imprinting

Funding

  1. Purdue University
  2. Ross Fellowship program at Purdue University
  3. Administrative Department of Science, Technology, and Innovation of Colombia [567-2012]
  4. Procter Gamble [209621]

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This Letter describes a low-cost, scalable nanomanufacturing process that enables the continuous forming of thin metallic layers with nanoscale accuracy using roll-to-roll, laser-induced superplasticity (R2RLIS). R2RLIS uses a laser shock to induce the ultrahigh-strain-rate deformation of metallic films at room temperature into low-cost polymeric nanomolds, independently of the original grain size of the metal. This simple and inexpensive nanoforming method does not require access to cleanrooms and associated facilities, and can be easily implemented on conventional CO2 lasers, enabling laser systems commonly used for rapid prototyping or industrial cutting and engraving to fabricate uniform and three-dimensional crystalline metallic nanostructures over large areas. Tuning the laser power during the R2RLIS process enables the control of the aspect ratio and the mechanical and optical properties of the fabricated nanostructures. This roll-to-roll technique successfully fabricates mechanically strengthened gold plasmonic nanostructures with aspect ratios as high as 5 that exhibit high oxidation resistance and strong optical field enhancements. The CO2 laser used in R2RLIS can also integrate the fabricated nanostructures on transparent flexible substrates with robust interfacial contact. The ability to fabricate ultrasmooth metallic nanostructures using roll-to-roll manufacturing enables the large scale production, at a relatively low-cost, of flexible plasmonic devices toward emerging applications.

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