Published January 1, 2018
| Version v1
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Colloidal Photoluminescent Refractive Index Nanosensor Using Plasmonic Effects
- 1. Yanka Kupala State Univ Grodno, Grodno 230023, BELARUS
- 2. Natl Acad Sci, BI Stepanov Inst Phys, Minsk 220072, BELARUS
Description
Fluorescence enhancement by metal nanostructures which is sensitive to refractive index n of an ambient medium is suggested as an operation principle of a novel refractive index sensor for liquids. Calculations are made for spherical and spheroidal Ag particles, and potential feasibility of sensitivity of the order of Delta n = 10(-4) is demonstrated. Sensors of this type can be made fully colloidal with metal bodies deposited on a substrate or comprising a metal layer covering colloidal assembly of dielectric particles to serve as a test strip as well as placed on a fiber tip end to get local probing of refractive index in the tip-enhanced refractometry mode. Colloidal core-shell semiconductor nanocrystals may become the best candidates for this type of sensors whereas molecular probes may be affected by chemical properties of tested liquids.
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