4.7 Article

Paper-based sandwich type SERS sensor based on silver nanoparticles and biomimetic recognizer

Journal

SENSORS AND ACTUATORS B-CHEMICAL
Volume 313, Issue -, Pages -

Publisher

ELSEVIER SCIENCE SA
DOI: 10.1016/j.snb.2020.127989

Keywords

Paper-based strip; SERS sensor; Biomimetic recognizer; Tartrazine; Synergistic enhancement

Funding

  1. National Natural Science Foundation of China [21874055, 21904047]
  2. Case-by-Case Project for Top Outstanding Talents of Jinan
  3. project of 20 items of University of Jinan [2018GXRC001]
  4. Excellent Youth Innovation Team in Universities of Shandong [2019KJC016]
  5. Taishan Scholars program

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A paper-based surface enhanced Raman scattering (SERS) sensor with synergistic enhancement strategy for selective detection of tartrazine in food products has been established in this work. For economic and mass production purposes, paper substrates were firstly installed with a silver layer to endow the paper with electroconductibility and dense plasmonic hotspots. A biomimetic recognizer (BR) membrane was attached upon the Ag paper as specific identification device, and a layer of high-density of silver nanoparticles (AgNPs) was decorated on the surface of Ag/BR paper through in-situ growth method to form a sandwich structure. Since the double layer of Ag/AgNPs demonstrated excellent local plasma resonance effect, combined with the identification function of BR, it made the paper SERS sensor emerge incredible Raman synergistic enhancement response on tartrazine molecules embraced the plasma nanoparticles. Thus, the synergistically enhanced Ag/BR/AgNPs paper SERS sensor was achieved and applied in on-site test of tartrazine in Children's snacks. The linear range (0.3 similar to 10 mu g mL(-1)) and the limit of detection (0.1138 mu g mL(-1)) of the SERS paper strip could be applied as a screening or occupational cut-off of tartrazine (100 mu g mL(-1)) for reference. In addition, the proposed paper sensor can be a potential candidate for multicomponent screening and is suitable for mass production and promotion.

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