A paper-based SERS/colorimetry substrate for reliable detection.

Hongkun Zhao, Chunning Chen, Yalei Wang, Jiaqi Liu, Jiaxin Lu, Jingtong Zhai, Rui Li, Nan Lu
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Abstract

For on-site analysis, the combination of surface enhanced Raman scattering (SERS) and colorimetry, as a dual-mode detection, can effectively improve the accuracy of detection, and reduce the influence of instrument fluctuation, which greatly improves the accuracy and reliability of the results. However, the preparation of SERS/colorimetry substrates are usually time-consuming and costly, which limits their practical applications. In this paper, a hydrophobic paper-based SERS/colorimetry substrate can be prepared by a simple spraying method. The hydrophobicity is introduced by the structures formed with polydimethylsiloxane and polymethylmethacrylate, which leads to high detection sensitivity due to its enrichment effect. Moreover, the electrostatic interaction between Ag nanoparticles and the analytes further enhances the performance of SERS and colorimetry in detection of thiram and aspartame. It also provides a new method for the detection of aspartame with colorimetry. Finally, the detection limits of SERS and colorimetry for thiram and aspartame are 0.1 mg/L and 0.1 g/L, 1 mg/L and 0.1 g/L, respectively. The paper-based SERS/colorimetry substrate makes the results more reliable through dual-mode detection, which shows great potential in the detection of real samples.

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纸张基SERS/比色法衬底可靠检测。
对于现场分析,表面增强拉曼散射(SERS)与比色法相结合作为双模检测,可以有效提高检测精度,减少仪器波动的影响,大大提高了结果的准确性和可靠性。然而,SERS/比色底物的制备通常耗时且昂贵,这限制了它们的实际应用。本文采用简单的喷涂方法制备疏水性纸基SERS/比色基材。疏水性是由聚二甲基硅氧烷和聚甲基丙烯酸甲酯形成的结构引入的,由于其富集作用,使得检测灵敏度很高。此外,银纳米粒子与被分析物之间的静电相互作用进一步增强了SERS和比色法检测硫胺和阿斯巴甜的性能。为阿斯巴甜的比色检测提供了一种新的方法。最后,SERS和比色法对西美姆和阿斯巴甜的检出限分别为0.1 mg/L和0.1 g/L, 1 mg/L和0.1 g/L。纸基SERS/比色基板通过双模检测使结果更加可靠,在实际样品的检测中显示出巨大的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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阿拉丁
polymethylmethacrylate
阿拉丁
thiram
阿拉丁
aspartame
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The impact of halogen substitution quantities on the fluorescence intensity ratio of lanthanide Schiff base complexes. Dual-mode luminescence and colorimetric sensing for Al3+ and Fe2+/Fe3+ ions in water using a zinc coordination polymer. A mitochondrion-targeted poly(N-isopropylacrylamide-coacrylic acid) nanohydrogel with a fluorescent bioprobe for ferrous ion imaging in vitro and in vivo. A paper-based SERS/colorimetry substrate for reliable detection. A portable paper-based surface enhanced Raman scattering platform for Al3+ sensing.
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