4.6 Article

Hybrid plasmonic Au-TiN vertically aligned nanocomposites: a nanoscale platform towards tunable optical sensing

Journal

NANOSCALE ADVANCES
Volume 1, Issue 3, Pages 1045-1054

Publisher

ROYAL SOC CHEMISTRY
DOI: 10.1039/c8na00306h

Keywords

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Funding

  1. Basil R. Turner Professorship at Purdue University - U.S. National Science Foundation [DMR-1565822]
  2. U.S. Department of Energy's National Nuclear Security Administration [DE-NA0003525]

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Tunable plasmonic structure at the nanometer scale presents enormous opportunities for various photonic devices. In this work, we present a hybrid plasmonic thin film platform: i.e., a vertically aligned Au nanopillar array grown inside a TiN matrix with controllable Au pillar density. Compared to single phase plasmonic materials, the presented tunable hybrid nanostructures attain optical flexibility including gradual tuning and anisotropic behavior of the complex dielectric function, resonant peak shifting and change of surface plasmon resonances (SPRs) in the UV-visible range, all confirmed by numerical simulations. The tailorable hybrid platform also demonstrates enhanced surface plasmon Raman response for Fourier-transform infrared spectroscopy (FTIR) and photoluminescence (PL) measurements, and presents great potentials as designable hybrid platforms for tunable optical-based chemical sensing applications.

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