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Surface enhanced infrared absorption spectroscopy based on gold nanostars and spherical nanoparticles

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peer-reviewed

Erstveröffentlichung
2017-10-16
Authors
Bibikova, Olga
Haas, Julian
Popov, Alexey
Ryabchikov, Yury
Kinnunen, Matti
et al.
Wissenschaftlicher Artikel


Published in
Analytica chimica acta ; 990 (2017). - S. 141-149. - Art.-Nr. ACA-17-689R1. - ISSN 0003-2670. - eISSN 1873-4324
Link to original publication
https://dx.doi.org/10.1016/j.aca.2017.07.045
Faculties
Fakultät für Naturwissenschaften
Institutions
Institut für Analytische und Bioanalytische Chemie
Document version
accepted version
Abstract
Plasmonic anisotropic nanoparticles possess a number of hot spots on their surface due to the presence of sharp edges, tips or vertices, leading to a high electric field strength surrounding the nanostructures. In this paper, we explore different plasmonic nanostructures, including anisotropic gold nanostars (AuNSts) and spherical gold nanoparticles, in surface-enhanced infrared absorption spectroscopy (SEIRAS) in an attenuated total reflection (ATR) configuration. In our experiments, we 22 23 24 25 26 27 observed up to 10-times enhancement of the infrared (IR) absorption of thioglycolic acid (TGA) and up 28 to 2-times enhancement of signals for bovine serum albumin (BSA) protein on plasmonic nanostructure- based films deposited on a silicon (Si) internal reflection element (IRE) compared to bare Si IRE. The dependence of the observed enhancement on the amount of AuNSts present at the surface of the IRE has been demonstrated. Quantitative studies with both, TGA and BSA were performed, observing that the 29 30 31 32 33 SEIRA signal can be correlated to the concentration of analyte molecules present within the evanescent 34 field. The calibration curves in the presence of the AuNSts showed enhanced sensitivity as compared with the bare Si IRE. We finally compare efficiencies of anisotropic AuNSts and spherical citrate- capped and “bare” laser-synthesized gold nanoparticles as SEIRAS substrates for the detection of TGA 35 36 37 38 and BSA. The signal obtained from AuNSts was at least 2 times higher for TGA molecules in 39 comparison with spherical gold nanoparticles, which was explained by a more efficient generation of hot spots on anisotropic surface due to the presence of sharp edges, tips or vertices, leading to a high electric field strength surrounding the AuNSts.
EU Project uulm
TROPSENSE / Development of a non-invassive breath test for early diagnosis of tropical diseases / EC / H2020 / 645758
Subject headings
[GND]: FT-IR-Spektroskopie | Gold | Nanopartikel | Nanosphäre
[LCSH]: Fourier transform infrared spectroscopy | Absorption spectroscopy | Plasmonics | Gold | Nanoparticles
[Free subject headings]: SEIRAS | Plasmonic | Gold nanostars | Gold nanosperes
[DDC subject group]: DDC 540 / Chemistry & allied sciences
License
CC BY-NC-ND 4.0 International
https://creativecommons.org/licenses/by-nc-nd/4.0/

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DOI & citation

Please use this identifier to cite or link to this item: http://dx.doi.org/10.18725/OPARU-12491

Bibikova, Olga et al. (2019): Surface enhanced infrared absorption spectroscopy based on gold nanostars and spherical nanoparticles. Open Access Repositorium der Universität Ulm und Technischen Hochschule Ulm. http://dx.doi.org/10.18725/OPARU-12491
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