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JOURNALS // Journal of Siberian Federal University. Mathematics & Physics // Archive

J. Sib. Fed. Univ. Math. Phys., 2025 Volume 18, Issue 3, Pages 347–357 (Mi jsfu1250)

Near-field interaction effects in colloidal Au-CeYTbF$_{3}$ nanoclusters in plasmonic immunoanalysis

Elina A. Izbasarova, Almaz R. Gazizov

Institute of Physics, Kazan Federal University, Kazan, Russian Federation

Abstract: In this paper, we study the effects of plasmonic enhancement of spontaneous emission in colloidal nanoclusters consisting of Au nanoparticles and CeYTbF$_{3}$ phosphor. Based on numerical simulation of various configurations of Au nanoparticles coated with polyethyleneimine, we analyzed the dependence of plasmonic resonances position on their number and distribution. The results showed that optimal nanoparticle configurations significantly enhance luminescence in the desired region of the visible spectrum, which opens up new possibilities for the development of highly sensitive nanosensors. At the same time, nanoclusters located on a Au substrate demonstrate a lower luminescence enhancement coefficient, while having a more inhomogeneous distribution of the optical near field. The results obtained reveal the dependence of the luminescence enhancement coefficient on the spatial distribution and coordination number of plasmonic nanoparticles in a nanocluster. This study contributes to the understanding of plasmonic interaction mechanisms and its applications in optical immunoassay and biomedical technologies.

Keywords: plasmonic nanoparticles, Purcell effect, Förster effect, FDTD modeling, luminescent nanoparticles.

UDC: 535.211:536.331

Received: 13.11.2024
Received in revised form: 29.12.2024
Accepted: 04.02.2025

Language: English



© Steklov Math. Inst. of RAS, 2025