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Loading of Au/Ag Bimetallic Nanoparticles within and Outside of the Flexible SiO(2) Electrospun Nanofibers as Highly Sensitive, Stable, Repeatable Substrates for Versatile and Trace SERS Detection
In this paper, we propose a facile and cost-effective electrospinning technique to fabricate surface-enhanced Raman scattering (SERS) substrates, which is appropriate for multiple analytes detection. First of all, HAuCl(4)∙3H(2)O was added into the TEOS/PVP precursor solution, and flexible SiO(2) na...
Autores principales: | , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
MDPI
2020
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7766957/ https://www.ncbi.nlm.nih.gov/pubmed/33339343 http://dx.doi.org/10.3390/polym12123008 |
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author | Wan, Menghui Zhao, Haodong Peng, Lichao Zou, Xueyan Zhao, Yanbao Sun, Lei |
author_facet | Wan, Menghui Zhao, Haodong Peng, Lichao Zou, Xueyan Zhao, Yanbao Sun, Lei |
author_sort | Wan, Menghui |
collection | PubMed |
description | In this paper, we propose a facile and cost-effective electrospinning technique to fabricate surface-enhanced Raman scattering (SERS) substrates, which is appropriate for multiple analytes detection. First of all, HAuCl(4)∙3H(2)O was added into the TEOS/PVP precursor solution, and flexible SiO(2) nanofibers incorporated with gold nanoparticles (SiO(2)@Au) were prepared by electrospinning and calcination. Subsequently, the nanofibrous membranes were immersed in the tannic acid and 3-aminopropyltriethoxysilane solution for surface modification through Michael addition reaction. Finally, the composite nanofibers (Ag@T-A@SiO(2)@Au) were obtained by the in-situ growth of Ag nanoparticles on the surfaces of nanofibers with tannic acid as a reducing agent. Due to the synergistic enhancement of Au and Ag nanoparticles, the flexible and self-supporting composite nanofibrous membranes have excellent SERS properties. Serving as SERS substrates, they are extremely sensitive to the detection of 4-mercaptophenol and 4-mercaptobenzoic acid, with an enhancement factor of 10(8). Moreover, they could be utilized to detect analytes such as pesticide thiram at a low concentration of 10(−8) mol/L, and the substrates retain excellent Raman signals stability during the durability test of 60 days. Furthermore, the as-fabricated substrates, as a versatile SERS platform, could be used to detect bacteria of Staphylococcus aureus without a specific and complicated bacteria-aptamer conjugation procedure, and the detection limit is up to 10(3) colony forming units/mL. Meanwhile, the substrates also show an excellent repeatability of SERS response for S. aureus organelles. Briefly, the prime novelty of this work is the fabrication of Au/Ag bimetallic synergetic enhancement substrates as SERS platform for versatile detection with high sensitivity and stability. |
format | Online Article Text |
id | pubmed-7766957 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | MDPI |
record_format | MEDLINE/PubMed |
spelling | pubmed-77669572020-12-28 Loading of Au/Ag Bimetallic Nanoparticles within and Outside of the Flexible SiO(2) Electrospun Nanofibers as Highly Sensitive, Stable, Repeatable Substrates for Versatile and Trace SERS Detection Wan, Menghui Zhao, Haodong Peng, Lichao Zou, Xueyan Zhao, Yanbao Sun, Lei Polymers (Basel) Article In this paper, we propose a facile and cost-effective electrospinning technique to fabricate surface-enhanced Raman scattering (SERS) substrates, which is appropriate for multiple analytes detection. First of all, HAuCl(4)∙3H(2)O was added into the TEOS/PVP precursor solution, and flexible SiO(2) nanofibers incorporated with gold nanoparticles (SiO(2)@Au) were prepared by electrospinning and calcination. Subsequently, the nanofibrous membranes were immersed in the tannic acid and 3-aminopropyltriethoxysilane solution for surface modification through Michael addition reaction. Finally, the composite nanofibers (Ag@T-A@SiO(2)@Au) were obtained by the in-situ growth of Ag nanoparticles on the surfaces of nanofibers with tannic acid as a reducing agent. Due to the synergistic enhancement of Au and Ag nanoparticles, the flexible and self-supporting composite nanofibrous membranes have excellent SERS properties. Serving as SERS substrates, they are extremely sensitive to the detection of 4-mercaptophenol and 4-mercaptobenzoic acid, with an enhancement factor of 10(8). Moreover, they could be utilized to detect analytes such as pesticide thiram at a low concentration of 10(−8) mol/L, and the substrates retain excellent Raman signals stability during the durability test of 60 days. Furthermore, the as-fabricated substrates, as a versatile SERS platform, could be used to detect bacteria of Staphylococcus aureus without a specific and complicated bacteria-aptamer conjugation procedure, and the detection limit is up to 10(3) colony forming units/mL. Meanwhile, the substrates also show an excellent repeatability of SERS response for S. aureus organelles. Briefly, the prime novelty of this work is the fabrication of Au/Ag bimetallic synergetic enhancement substrates as SERS platform for versatile detection with high sensitivity and stability. MDPI 2020-12-16 /pmc/articles/PMC7766957/ /pubmed/33339343 http://dx.doi.org/10.3390/polym12123008 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Article Wan, Menghui Zhao, Haodong Peng, Lichao Zou, Xueyan Zhao, Yanbao Sun, Lei Loading of Au/Ag Bimetallic Nanoparticles within and Outside of the Flexible SiO(2) Electrospun Nanofibers as Highly Sensitive, Stable, Repeatable Substrates for Versatile and Trace SERS Detection |
title | Loading of Au/Ag Bimetallic Nanoparticles within and Outside of the Flexible SiO(2) Electrospun Nanofibers as Highly Sensitive, Stable, Repeatable Substrates for Versatile and Trace SERS Detection |
title_full | Loading of Au/Ag Bimetallic Nanoparticles within and Outside of the Flexible SiO(2) Electrospun Nanofibers as Highly Sensitive, Stable, Repeatable Substrates for Versatile and Trace SERS Detection |
title_fullStr | Loading of Au/Ag Bimetallic Nanoparticles within and Outside of the Flexible SiO(2) Electrospun Nanofibers as Highly Sensitive, Stable, Repeatable Substrates for Versatile and Trace SERS Detection |
title_full_unstemmed | Loading of Au/Ag Bimetallic Nanoparticles within and Outside of the Flexible SiO(2) Electrospun Nanofibers as Highly Sensitive, Stable, Repeatable Substrates for Versatile and Trace SERS Detection |
title_short | Loading of Au/Ag Bimetallic Nanoparticles within and Outside of the Flexible SiO(2) Electrospun Nanofibers as Highly Sensitive, Stable, Repeatable Substrates for Versatile and Trace SERS Detection |
title_sort | loading of au/ag bimetallic nanoparticles within and outside of the flexible sio(2) electrospun nanofibers as highly sensitive, stable, repeatable substrates for versatile and trace sers detection |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7766957/ https://www.ncbi.nlm.nih.gov/pubmed/33339343 http://dx.doi.org/10.3390/polym12123008 |
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