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Formation of Gold Nanoparticle Self-Assembling Films in Various Polymer Matrices for SERS Substrates

Surface-enhanced Raman spectroscopy (SERS) is regarded as a versatile tool for studying the composition and structure of matter. This work has studied the preparation of a SERS substrate based on a self-assembling plasmonic nanoparticle film (SPF) in a polymer matrix. Several synthesis parameters fo...

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Autores principales: Maleeva, Ksenia A., Kaliya, Ilia E., Tkach, Anton P., Babaev, Anton A., Baranov, Michail A., Berwick, Kevin, Perova, Tatiana S., Baranov, Alexander V., Bogdanov, Kirill V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9332835/
https://www.ncbi.nlm.nih.gov/pubmed/35897629
http://dx.doi.org/10.3390/ma15155197
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author Maleeva, Ksenia A.
Kaliya, Ilia E.
Tkach, Anton P.
Babaev, Anton A.
Baranov, Michail A.
Berwick, Kevin
Perova, Tatiana S.
Baranov, Alexander V.
Bogdanov, Kirill V.
author_facet Maleeva, Ksenia A.
Kaliya, Ilia E.
Tkach, Anton P.
Babaev, Anton A.
Baranov, Michail A.
Berwick, Kevin
Perova, Tatiana S.
Baranov, Alexander V.
Bogdanov, Kirill V.
author_sort Maleeva, Ksenia A.
collection PubMed
description Surface-enhanced Raman spectroscopy (SERS) is regarded as a versatile tool for studying the composition and structure of matter. This work has studied the preparation of a SERS substrate based on a self-assembling plasmonic nanoparticle film (SPF) in a polymer matrix. Several synthesis parameters for the SPF are investigated, including the size of the particles making up the film and the concentration and type of the self-assembling agent. The result of testing systems with different characteristics is discussed using a model substance (pseudoisocyanin iodide). These models can be useful in the study of biology and chemistry. Research results contain the optimal parameters for SPF synthesis, maximizing the SERS signal. The optimal procedure for SPF assembly is determined and used for the synthesis of composite SPFs within different polymer matrices. SPF in a polymer matrix is necessary for the routine use of the SERS substrate for various types of analytes, including solid samples or those sensitive to contamination. Polystyrene, polyvinyl alcohol (PVA), and polyethylene are investigated to obtain a polymer matrix for SPF, and various methods of incorporating SPF into a polymer matrix are being explored. It is found that films with the best signal enhancement and reproducibility were obtained in polystyrene. The minimum detectable concentration for the SERS substrate obtained is equal to 10(−10) M. We prepared a SERS substrate with an analytical enhancement factor of 2.7 × 10(4), allowing an increase in the detection sensitivity of analyte solutions of five orders of magnitude.
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spelling pubmed-93328352022-07-29 Formation of Gold Nanoparticle Self-Assembling Films in Various Polymer Matrices for SERS Substrates Maleeva, Ksenia A. Kaliya, Ilia E. Tkach, Anton P. Babaev, Anton A. Baranov, Michail A. Berwick, Kevin Perova, Tatiana S. Baranov, Alexander V. Bogdanov, Kirill V. Materials (Basel) Article Surface-enhanced Raman spectroscopy (SERS) is regarded as a versatile tool for studying the composition and structure of matter. This work has studied the preparation of a SERS substrate based on a self-assembling plasmonic nanoparticle film (SPF) in a polymer matrix. Several synthesis parameters for the SPF are investigated, including the size of the particles making up the film and the concentration and type of the self-assembling agent. The result of testing systems with different characteristics is discussed using a model substance (pseudoisocyanin iodide). These models can be useful in the study of biology and chemistry. Research results contain the optimal parameters for SPF synthesis, maximizing the SERS signal. The optimal procedure for SPF assembly is determined and used for the synthesis of composite SPFs within different polymer matrices. SPF in a polymer matrix is necessary for the routine use of the SERS substrate for various types of analytes, including solid samples or those sensitive to contamination. Polystyrene, polyvinyl alcohol (PVA), and polyethylene are investigated to obtain a polymer matrix for SPF, and various methods of incorporating SPF into a polymer matrix are being explored. It is found that films with the best signal enhancement and reproducibility were obtained in polystyrene. The minimum detectable concentration for the SERS substrate obtained is equal to 10(−10) M. We prepared a SERS substrate with an analytical enhancement factor of 2.7 × 10(4), allowing an increase in the detection sensitivity of analyte solutions of five orders of magnitude. MDPI 2022-07-27 /pmc/articles/PMC9332835/ /pubmed/35897629 http://dx.doi.org/10.3390/ma15155197 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Maleeva, Ksenia A.
Kaliya, Ilia E.
Tkach, Anton P.
Babaev, Anton A.
Baranov, Michail A.
Berwick, Kevin
Perova, Tatiana S.
Baranov, Alexander V.
Bogdanov, Kirill V.
Formation of Gold Nanoparticle Self-Assembling Films in Various Polymer Matrices for SERS Substrates
title Formation of Gold Nanoparticle Self-Assembling Films in Various Polymer Matrices for SERS Substrates
title_full Formation of Gold Nanoparticle Self-Assembling Films in Various Polymer Matrices for SERS Substrates
title_fullStr Formation of Gold Nanoparticle Self-Assembling Films in Various Polymer Matrices for SERS Substrates
title_full_unstemmed Formation of Gold Nanoparticle Self-Assembling Films in Various Polymer Matrices for SERS Substrates
title_short Formation of Gold Nanoparticle Self-Assembling Films in Various Polymer Matrices for SERS Substrates
title_sort formation of gold nanoparticle self-assembling films in various polymer matrices for sers substrates
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9332835/
https://www.ncbi.nlm.nih.gov/pubmed/35897629
http://dx.doi.org/10.3390/ma15155197
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