Acoustofluidic one-step production of plasmonic Ag nanoparticles for portable paper-based ultrasensitive SERS detection of bactericides.

J Colloid Interface Sci

School of Chemical Engineering and Technology, Xi'an Jiaotong University, 28 Xianning West Road, Xi'an, Shaanxi 710049, PR China; State Key Laboratory of Transducer Technology, Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences, 865 Changning Road, Shanghai 200050, PR China. Electronic address:

Published: November 2024

AI Article Synopsis

  • The study presents a new method for creating SERS (Surface-Enhanced Raman Scattering) substrates using a quick, eco-friendly process to monitor bactericides in dairy products, addressing food safety concerns.
  • By using laser cutting on paper substrates, the researchers simultaneously generate aldehydes that act as reducing agents for the synthesis of silver nanoparticles, requiring only a minimal amount of silver precursor.
  • The one-step fabrication process takes just 3 minutes and delivers effective and uniform SERS substrates, enabling the detection of three common bactericides in food samples with high performance and low costs.

Article Abstract

SERS measurements for monitoring bactericides in dairy products are highly desired for food safety problems. However, the complicated preparation process of SERS substrates greatly impedes the promotion of SERS. Here, we propose acoustofluidic one-step synthesis of Ag nanoparticles on paper substrates for SERS detection. Our method is economical, fast, simple, and eco-friendly. We adopted laser cutting to cut out appropriate paper shapes, and aldehydes were simultaneously produced at the cutting edge in the pyrolysis of cellulose by laser which were leveraged as the reducing reagent. In the synthesis, only 5 μL of Ag precursor was added to complete the reaction, and no reducing agent was used. Our recently developed acoustofluidic device was employed to intensely mix Ag ions and aldehydes and spread the reduced Ag nanoparticles over the substrate. The SERS substrate was fabricated in 1 step and 3 min. The standard R6G solution measurement demonstrated the excellent signal and prominent uniformity of the fabricated SERS substrates. SERS detection of the safe concentration of three bactericides, including tetracycline hydrochloride, thiabendazole, and malachite green, from food samples can be achieved using fabricated substrates. We take the least cost, time, reagents, and steps to fabricate the SERS substrate with satisfying performance. Our work has an extraodinary meaning for the green preparation and large-scale application of SERS.

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Source
http://dx.doi.org/10.1016/j.jcis.2024.06.076DOI Listing

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