Towards multiple readout application of plasmonic arrays

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Date
2011
Volume
2
Issue
1
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Publisher
Frankfurt, M. : Beilstein-Institut zur Förderung der Chemischen Wissenschaften
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Abstract

In order to combine the advantages of fluorescence and surface-enhanced Raman spectroscopy (SERS) on the same chip platform, a nanostructured gold surface with a unique design, allowing both the sensitive detection of fluorescence light together with the specific Raman fingerprint of the fluorescent molecules, was established. This task requires the fabrication of plasmonic arrays that permit the binding of molecules of interest at different distances from the metallic surface. The most efficient SERS enhancement is achieved for molecules directly adsorbed on the metallic surface due to the strong field enhancement, but where, however, the fluorescence is quenched most efficiently. Furthermore, the fluorescence can be enhanced efficiently by careful adjustment of the optical behavior of the plasmonic arrays. In this article, the simultaneous application of SERS and fluorescence, through the use of various gold nanostructured arrays, is demonstrated by the realization of a DNA detection scheme. The results shown open the way to more flexible use of plasmonic arrays in bioanalytics.

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Keywords
Fluorescence, Multiple readout, Plasmonic array, Surface-enhanced fluorescence (SEF), Surface-enhanced Raman spectroscopy (SERS), Bioanalytics, DNA detection, Fluorescent molecules, Metallic surface, Multiple readout, Nanostructured arrays, Nanostructured gold, Optical behavior, Plasmonic, Sensitive detection, SERS enhancement, Strong field enhancement, Surface enhanced fluorescence, Surface enhanced Raman spectroscopy, Fluorescence, Molecules, Raman scattering, Raman spectroscopy, Surface measurement, Plasmons
Citation
Cialla, D., Weber, K., Böhme, R., Hübner, U., Schneidewind, H., Zeisberger, M., et al. (2011). Towards multiple readout application of plasmonic arrays. 2(1). https://doi.org//10.3762/bjnano.2.54
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CC BY 2.0 Unported