English

Freestanding and permeable nanoporous gold membranes for surface-enhanced Raman scattering

Optics 2023-01-30 v1 Materials Science

Abstract

Surface-enhanced Raman spectroscopy (SERS) demands reliable, high enhancement substrates in order to be used in different fields of application. Here, we introduce freestanding porous gold membranes (PAuM) as easy to produce, scalable, mechanically stable, and effective SERS substrates. We fabricate large-scale sub-30 thick PAuM, that form freestanding membranes with varying morphologies depending on the nominal gold thickness. These PAuM are mechanically stable for pressures up to >3>3 bar, and exhibit surface-enhanced Raman scattering with local enhancement factors of 10410^4 to 10510^5, which we demonstrate by wavelength-dependent and spatially resolved Raman measurements using graphene as a local Raman probe. Numerical simulations reveal that the enhancement arises from individual, nanoscale pores in the membrane acting as optical slot antennas. Our PAuM are mechanically stable, provide robust SERS enhancement for excitation power densities up to 10610^6W\,cm2^{-2}, and may find use as a building block in flow-through sensor applications based on SERS.

Keywords

Cite

@article{arxiv.2109.13309,
  title  = {Freestanding and permeable nanoporous gold membranes for surface-enhanced Raman scattering},
  author = {Roman M. Wyss and Markus Parzefall and Cynthia M. Gruber and Sebastian Busschaert and Karl-Philipp Schlichting and Carin Rae Lightner and Emanuel Loertscher and Lukas Novotny and Sebastian Heeg},
  journal= {arXiv preprint arXiv:2109.13309},
  year   = {2023}
}

Comments

Roman M. Wyss and Markus Parzefal contributed equally. Supporting Information included