4.7 Article

Loading of Au/Ag Bimetallic Nanoparticles within and Outside of the Flexible SiO2 Electrospun Nanofibers as Highly Sensitive, Stable, Repeatable Substrates for Versatile and Trace SERS Detection

期刊

POLYMERS
卷 12, 期 12, 页码 -

出版社

MDPI
DOI: 10.3390/polym12123008

关键词

Ag; Au nanoparticles; synergetic enhancement; electrospun nanofibers; SERS substrates; versatile detection

资金

  1. Key Scientific Research Project of Colleges and Universities in Henan Province [21A150014]
  2. Postgraduate Education Innovation and Quality Promotion Program of Henan University [SYL19060166, SYL19060101]
  3. Interdisciplinary Research for First-class Discipline Construction Project of Henan University [2019YLXKJC04]
  4. 2019 Medical Interdisciplinary Cultivation Project of Henan University [CJ1205A0240013]

向作者/读者索取更多资源

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, HAuCl4 center dot 3H(2)O was added into the TEOS/PVP precursor solution, and flexible SiO2 nanofibers incorporated with gold nanoparticles (SiO2@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@SiO2@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.

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