Controllable Preparation of SERS-Active Ag-FeS Substrates by a Cosputtering Technique

Molecules. 2019 Feb 2;24(3):551. doi: 10.3390/molecules24030551.

Abstract

In this work, we introduced an ordered metal-semiconductor molecular system and studied the resulting surface-enhanced Raman scattering (SERS) effect. Ag-FeS nanocaps with sputtered films of different thicknesses were obtained by changing the sputtering power of FeS while the sputtering power of Ag and the deposition time remained constant. When metallic Ag and the semiconductor FeS are cosputtered, the Ag film separates into Ag islands partially covered by FeS and strong coupling occurs among the Ag islands isolated by FeS, which contributes to the SERS phenomenon. We also investigated the SERS enhancement mechanism by decorating the nanocap arrays produced with different FeS sputtering powers with methylene blue (MB) probe molecules. As the FeS sputtering power increased, the SERS signal first increased and then decreased. The experimental results show that the SERS enhancement can mainly be attributed to the surface plasmon resonance (SPR) of the Ag nanoparticles. The coupling between FeS and Ag and the SPR displacement of Ag vary with different sputtering powers, resulting in changes in the intensity of the SERS spectra. These results demonstrate the high sensitivity of SERS substrates consisting of Ag-FeS nanocap arrays.

Keywords: PSCP templates; SERS; SPR; cosputtering.

MeSH terms

  • Ferrous Compounds / chemistry*
  • Metal Nanoparticles / chemistry*
  • Semiconductors
  • Silver / chemistry*
  • Spectrum Analysis, Raman
  • Surface Plasmon Resonance
  • Surface Properties

Substances

  • Ferrous Compounds
  • Silver
  • ferrous sulfide