Optimization of Gold Nanorod Features for the Enhanced Performance of Plasmonic Nanocavity Arrays

Marianna Beiderman, Ariel Ashkenazy, Elad Segal, Menachem Motiei, Adi Salomon, Tamar Sadan, Dror Fixler, Rachela Popovtzer

Research output: Contribution to journalArticlepeer-review

5 Scopus citations

Abstract

Nanoplasmonic biosensors incorporating noble metal nanocavity arrays are widely used for the detection of various biomarkers. Gold nanorods (GNRs) have unique properties that can enhance spectroscopic detection capabilities of such nanocavity-based biosensors. However, the contribution of the physical properties of multiple GNRs to resonance enhancement of gold nanocavity arrays requires further characterization and elucidation. In this work, we study how GNR aspect ratio (AR) and surface area (SA) modify the plasmonic resonance spectrum of a gold triangular nanocavity array by both simulations and experiments. The finite integration technique (FIT) simulated the extinction spectrum of the gold nanocavity array with 300 nm periodicity onto which the GNRs of different ARs and SAs are placed. Simulations showed that matching of the GNRs longitudinal peak, which is affected by AR, to the nanocavity array's spectrum minima can optimize signal suppression and shifting. Moreover, increasing SA of the matched GNRs increased the spectral variations of the array. Experiments confirmed that GNRs conjugated to a gold triangular nanocavity array of 300 nm periodicity caused spectrum suppression and redshift. Our findings demonstrate that tailoring of the GNR AR and SA parameters to nanoplasmonic arrays has the potential to greatly improve spectral variations for enhanced plasmonic biosensing.

Original languageEnglish
Pages (from-to)29071-29077
Number of pages7
JournalACS Omega
Volume6
Issue number43
DOIs
StatePublished - 2 Nov 2021

Bibliographical note

Publisher Copyright:
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Funding

This work was partially supported by the Israel Ministry of Science and Technology grant number 3-16491 and grant number 3-14345. The work of M.B. in this study was supported by the Israel Ministry of Science and Technology Golda Meir Academy-Industry grant for Advancement of Woman in Science.

FundersFunder number
Israel Ministry of Science and Technology Golda Meir Academy-Industry
Ministry of science and technology, Israel3-14345, 3-16491

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