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TiO(2) compact layer induced charge transfer enhancement in a three-dimensional TiO(2)–Ag array SERS substrate for quantitative and multiplex analysis

A highly sensitive and uniform surface-enhanced Raman scattering (SERS) substrate is the guarantee for reliable quantitative analysis. Herein, a three-dimensional TiO(2)–Ag SERS substrate was prepared by growing a TiO(2) nanorods (NRs) array on a TiO(2) compact layer (c-TiO(2)), followed by modifica...

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Autores principales: Ding, Zhuang, Wang, Yaru, Zhou, Wanpeng, Shui, Yanna, Zhu, Zhengdong, Zhang, Maofeng, Huang, Youju, Jiang, Changlong, Li, Jianhua, Wu, Yucheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10012413/
https://www.ncbi.nlm.nih.gov/pubmed/36926018
http://dx.doi.org/10.1039/d3ra00094j
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author Ding, Zhuang
Wang, Yaru
Zhou, Wanpeng
Shui, Yanna
Zhu, Zhengdong
Zhang, Maofeng
Huang, Youju
Jiang, Changlong
Li, Jianhua
Wu, Yucheng
author_facet Ding, Zhuang
Wang, Yaru
Zhou, Wanpeng
Shui, Yanna
Zhu, Zhengdong
Zhang, Maofeng
Huang, Youju
Jiang, Changlong
Li, Jianhua
Wu, Yucheng
author_sort Ding, Zhuang
collection PubMed
description A highly sensitive and uniform surface-enhanced Raman scattering (SERS) substrate is the guarantee for reliable quantitative analysis. Herein, a three-dimensional TiO(2)–Ag SERS substrate was prepared by growing a TiO(2) nanorods (NRs) array on a TiO(2) compact layer (c-TiO(2)), followed by modification with Ag nanoparticles (AgNPs). The synergy between the c-TiO(2), semiconductor TiO(2) NRs and the plasmonic AgNPs collaboratively endowed it with high sensitivity, in which c-TiO(2) effectively blocked the recombination of electrons and holes, and the charge transfer enhancement contributed 10-fold improvement over that without the c-TiO(2) substrate. Besides the high sensitivity, the TiO(2)–Ag hybrid array SERS substrate also showed quantitative and multi-component detecting capability. The limit of detection (LOD) for crystal violet (CV) was determined to be 10(−9) M even with a portable Raman instrument. The TiO(2)–Ag composite structure was extended to detect organic pesticides (thiram, triazophos and fonofos), and the LODs for thiram, triazophos and fonofos were measured to be 10(−7) M, 10(−7) M and 10(−6) M, respectively. In addition, the realistic simulation detecting pesticide residues for a real sample of dendrobium was demonstrated. The sensitive, quantitative and multiplex analysis of the TiO(2)–Ag hybrid array substrate indicated its great potential in the rapid detection of pesticide residues in real samples.
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spelling pubmed-100124132023-03-15 TiO(2) compact layer induced charge transfer enhancement in a three-dimensional TiO(2)–Ag array SERS substrate for quantitative and multiplex analysis Ding, Zhuang Wang, Yaru Zhou, Wanpeng Shui, Yanna Zhu, Zhengdong Zhang, Maofeng Huang, Youju Jiang, Changlong Li, Jianhua Wu, Yucheng RSC Adv Chemistry A highly sensitive and uniform surface-enhanced Raman scattering (SERS) substrate is the guarantee for reliable quantitative analysis. Herein, a three-dimensional TiO(2)–Ag SERS substrate was prepared by growing a TiO(2) nanorods (NRs) array on a TiO(2) compact layer (c-TiO(2)), followed by modification with Ag nanoparticles (AgNPs). The synergy between the c-TiO(2), semiconductor TiO(2) NRs and the plasmonic AgNPs collaboratively endowed it with high sensitivity, in which c-TiO(2) effectively blocked the recombination of electrons and holes, and the charge transfer enhancement contributed 10-fold improvement over that without the c-TiO(2) substrate. Besides the high sensitivity, the TiO(2)–Ag hybrid array SERS substrate also showed quantitative and multi-component detecting capability. The limit of detection (LOD) for crystal violet (CV) was determined to be 10(−9) M even with a portable Raman instrument. The TiO(2)–Ag composite structure was extended to detect organic pesticides (thiram, triazophos and fonofos), and the LODs for thiram, triazophos and fonofos were measured to be 10(−7) M, 10(−7) M and 10(−6) M, respectively. In addition, the realistic simulation detecting pesticide residues for a real sample of dendrobium was demonstrated. The sensitive, quantitative and multiplex analysis of the TiO(2)–Ag hybrid array substrate indicated its great potential in the rapid detection of pesticide residues in real samples. The Royal Society of Chemistry 2023-03-14 /pmc/articles/PMC10012413/ /pubmed/36926018 http://dx.doi.org/10.1039/d3ra00094j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Ding, Zhuang
Wang, Yaru
Zhou, Wanpeng
Shui, Yanna
Zhu, Zhengdong
Zhang, Maofeng
Huang, Youju
Jiang, Changlong
Li, Jianhua
Wu, Yucheng
TiO(2) compact layer induced charge transfer enhancement in a three-dimensional TiO(2)–Ag array SERS substrate for quantitative and multiplex analysis
title TiO(2) compact layer induced charge transfer enhancement in a three-dimensional TiO(2)–Ag array SERS substrate for quantitative and multiplex analysis
title_full TiO(2) compact layer induced charge transfer enhancement in a three-dimensional TiO(2)–Ag array SERS substrate for quantitative and multiplex analysis
title_fullStr TiO(2) compact layer induced charge transfer enhancement in a three-dimensional TiO(2)–Ag array SERS substrate for quantitative and multiplex analysis
title_full_unstemmed TiO(2) compact layer induced charge transfer enhancement in a three-dimensional TiO(2)–Ag array SERS substrate for quantitative and multiplex analysis
title_short TiO(2) compact layer induced charge transfer enhancement in a three-dimensional TiO(2)–Ag array SERS substrate for quantitative and multiplex analysis
title_sort tio(2) compact layer induced charge transfer enhancement in a three-dimensional tio(2)–ag array sers substrate for quantitative and multiplex analysis
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10012413/
https://www.ncbi.nlm.nih.gov/pubmed/36926018
http://dx.doi.org/10.1039/d3ra00094j
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