4.3 Article

Characterization of plasmonic hole arrays as transparent electrical contacts for organic photovoltaics using high-brightness Fourier transform methods

期刊

JOURNAL OF MODERN OPTICS
卷 61, 期 21, 页码 1735-1742

出版社

TAYLOR & FRANCIS LTD
DOI: 10.1080/09500340.2014.917731

关键词

high brightness spectroscopy; metal hole array; organic photovoltaic; Fourier transform photocurrent; laser-driven light source; plasmonic transparent contacts; plasmonics and nanophotonics

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资金

  1. US Department of Energy, Office of Basic Energy Sciences [DE-AC02-98CH10886]
  2. US Department of Energy, Basic Energy Sciences, Materials Sciences
  3. Engineering Division US Department of Energy, Sustainable Energy Technologies Department [DE-AC02-98CH10886]

向作者/读者索取更多资源

We present a methodology for probing light-matter interactions in prototype photovoltaic devices consisting of an organic semiconductor active layer with a semitransparent metal electrical contact exhibiting surface plasmon-based enhanced optical transmission. We achieve high-spectral irradiance in a spot size of less than 100m using a high-brightness laser-driven light source and appropriate coupling optics. Spatially resolved Fourier transform photocurrent spectroscopy in the visible and near-infrared spectral regions allows us to measure external quantum efficiency with high sensitivity in small-area devices (<1mm(2)). This allows for rapid fabrication of variable-pitch sub-wavelength hole arrays in metal films for use as transparent electrical contacts, and evaluation of the evanescent and propagating mode coupling to resonances in the active layer.

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