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. 2017 May 23;11(5):4969-4975.
doi: 10.1021/acsnano.7b01621. Epub 2017 Apr 28.

Broadband Fluorescence Enhancement with Self-Assembled Silver Nanoparticle Optical Antennas

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Broadband Fluorescence Enhancement with Self-Assembled Silver Nanoparticle Optical Antennas

Carolin Vietz et al. ACS Nano. .

Abstract

Plasmonic structures are known to affect the fluorescence properties of dyes placed in close proximity. This effect has been exploited in combination with single-molecule techniques for several applications in the field of biosensing. Among these plasmonic structures, top-down zero-mode waveguides stand out due to their broadband capabilities. In contrast, optical antennas based on gold nanostructures exhibit fluorescence enhancement on a narrow fraction of the visible spectrum typically restricted to the red to near-infrared region. In this contribution, we exploit the DNA origami technique to self-assemble optical antennas based on large (80 nm) silver nanoparticles. We have studied the performance of these antennas with far- and near-field simulations and characterized them experimentally with single-molecule fluorescence measurements. We demonstrate that silver-based optical antennas can yield a fluorescence enhancement of more than 2 orders of magnitude throughout the visible spectral range for high intrinsic quantum yield dyes. Additionally, a comparison between the performance of gold and silver-based antennas is included. The results indicate that silver-based antennas strongly outperform their gold counterparts in the blue and green ranges and exhibit marginal differences in the red range. These characteristics render silver-based optical antennas ready for applications involving several fluorescently labeled species across the visible spectrum.

Keywords: DNA origami; fluorescence enhancement; nanophotonics; plasmonics; silver nanoparticles; single-molecule detection.

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