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Surface enhanced fluorescence

Journal of Physics D Applied Physics · 2007 · Vol. 41(1) · pp. 013001–013001
Emmanuel FortS. Grésillon

Abstract

Fluorescence is widely used in optical devices, microscopy imaging, biology, medical research and diagnosis. Improving fluorescence sensitivity, all the way to the limit of single-molecular detection needed in many applications, remains a great challenge. The technique of surface enhanced fluorescence (SEF) is based upon the design of surfaces in the vicinity of the emitter. SEF yields an overall improvement in the fluorescence detection efficiency through modification and control of the local electromagnetic environment of the emitter. Near-field coupling between the emitter and surface modes plays a crucial role in SEF. In particular, plasmonic surfaces with localized and propagating surface plasmons are efficient SEF substrates. Recent progress in tailoring surfaces at the nanometre scale extends greatly the realm of SEF applications. This review focuses on the recent advances in the different mechanisms involved in SEF, in each case highlighting the most relevant applications.

Gold and Silver Nanoparticles Synthesis and ApplicationsPlasmonic and Surface Plasmon ResearchNear-Field Optical MicroscopyFluorescenceSurface (topology)ChemistryMaterials scienceOpticsPhysicsMathematicsGeometry
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Physical Review · 1946 · 5,843 citations
Surface-plasmon field-enhanced fluorescence spectroscopy
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Optical stethoscopy: Image recording with resolution λ/20
Applied Physics Letters · 1984 · 1,998 citations
Surface-enhanced Raman scattering
Chemical Society Reviews · 1998 · 3,359 citations
Surface-enhanced spectroscopy
Reviews of Modern Physics · 1985 · 5,366 citations
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