We fabricate a plasmonic nanoslot that is capable of performing enhanced single molecule detection at 10 mu M concentrations. The nanoslot combines the tiny detection volume of a zero-mode waveguide and the field enhancement of a plasmonic nanohole. The nanoslot is fabricated on a bi-metallic film formed by the sequential deposition of gold and aluminum on a transparent substrate. Simulations of the structure yield an average near-field intensity enhancement of two orders of magnitude at its resonant frequency. Experimentally, we measure the fluorescence stemming from the nanoslot and compare it with that of a standard aluminum zero-mode waveguide. We also compare the detection volume for both structures. We observe that while both structures have a similar detection volume, the nanoslot yields a 25-fold fluorescence enhancement.

Plasmonic zero mode waveguide for highly confined and enhanced fluorescence emission / Ponzellini, P; Zambrana-Puyalto, X; Maccaferri, N; Lanzano, L; De Angelis, F; Garoli, D. - In: NANOSCALE. - ISSN 2040-3364. - 10:36(2018), pp. 17362-17369. [10.1039/c8nr04103b]

Plasmonic zero mode waveguide for highly confined and enhanced fluorescence emission

Garoli D
2018

Abstract

We fabricate a plasmonic nanoslot that is capable of performing enhanced single molecule detection at 10 mu M concentrations. The nanoslot combines the tiny detection volume of a zero-mode waveguide and the field enhancement of a plasmonic nanohole. The nanoslot is fabricated on a bi-metallic film formed by the sequential deposition of gold and aluminum on a transparent substrate. Simulations of the structure yield an average near-field intensity enhancement of two orders of magnitude at its resonant frequency. Experimentally, we measure the fluorescence stemming from the nanoslot and compare it with that of a standard aluminum zero-mode waveguide. We also compare the detection volume for both structures. We observe that while both structures have a similar detection volume, the nanoslot yields a 25-fold fluorescence enhancement.
2018
10
36
17362
17369
Plasmonic zero mode waveguide for highly confined and enhanced fluorescence emission / Ponzellini, P; Zambrana-Puyalto, X; Maccaferri, N; Lanzano, L; De Angelis, F; Garoli, D. - In: NANOSCALE. - ISSN 2040-3364. - 10:36(2018), pp. 17362-17369. [10.1039/c8nr04103b]
Ponzellini, P; Zambrana-Puyalto, X; Maccaferri, N; Lanzano, L; De Angelis, F; Garoli, D
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1316002
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