| Literature DB >> 26061442 |
Myoung-Kyu Oh1, Yong-Seok Shin, Chang-Lyoul Lee, Ranjit De, Hoonsoo Kang, Nan Ei Yu, Bok Hyeon Kim, Joon Heon Kim, Jin-Kyu Yang.
Abstract
Aligned silver nanorod (AgNR) array films were fabricated by oblique thermal evaporation. The substrate temperature during evaporation was varied from 10 to 100 °C using a home-built water cooling system. Deposition angle and substrate temperature were found to be the most important parameters for the morphology of fabricated films. Especially, it was found that there exists a critical temperature at ~90 °C for the formation of the AgNR array. The highest enhancement factor of the surface-enhanced Raman scattering (SERS), observed in the Ag films coated with benzenethiol monolayer, was ~6 × 10(7). Hot spots, excited in narrow gaps between nanorods, were attributed to the huge enhancement factor by our finite-difference time-domain (FDTD) simulation reflecting the real morphology.Entities:
Year: 2015 PMID: 26061442 PMCID: PMC4464578 DOI: 10.1186/s11671-015-0962-8
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Fig. 1Schematic diagram of the substrate mount and cooling system
Fig. 2SEM images of Ag films fabricated at different substrate temperatures of (a) 10, (b) 30, (c) 50, (d) 70, and (e) 100 °C. Scale bars in the upper images correspond to 2 μm and those in the lower images 1 μm
Fig. 3Calculated random diffusion distances of Ag and Co adatoms with respect to substrate temperature using vapor pressure data
Fig. 4X-ray diffraction pattern of a AgNR array film on silicon wafer
Fig. 5SERS spectrum of benzenethiol SAM on an AgNR array film (red) and Raman spectrum of neat benzenethiol (black)
Fig. 6Measured E.F.s dependent on nanorod length (a) and substrate temperature (b)
Fig. 7FDTD simulation results. a Simulation structure. b Local maximum field intensity, {E 2}max, as a function of wavelength and resonance spectrum. c yz cut-view and (d) xy cut-view of the E 2 field at 633 nm in the normal incidence of E -polarized plane wave