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Flexible and robust SERS active substrates for conformal rapid detection of pesticide residues from fruits

机译:灵活而坚固的SERS活性底物,用于保形快速检测水果中的农药残留

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Flexible surface enhanced Raman scattering (SERS) substrates have advantage over the conventional rigid substrates as they can conform to the underlying object for the efficient extraction of target molecules from complex surfaces. Here, we demonstrate a simple and facile method for fabricating large area SERS-active, flexible and robust substrate for conformal and rapid extraction and detection of trace molecules. The novel SERS substrate was fabricated by embedding Ag nanorods into the polydimethyl-siloxane (PDMS) polymer. The AgNRs embedded SERS substrates exhibited a high sensitivity and excellent reproducibility for analytes employed, demonstrating a direct application in trace detection for on-field applications. The in situ SERS measurements on these flexible substrates under mechanical tensile strain conditions were performed. Our results show that flexible SERS substrates can withstand a tensile strain (s) value as high as 30% without losing SERS performance. The functionality of AgNRs embedded PDMS SERS substrate was demonstrated by directly extracting trace amount (~10~(-9) g/cm~2) of thiram pesticide directly from fruit peels via simple "paste and peel off" method.
机译:柔性表面增强拉曼散射(SERS)基板比常规刚性基板具有优势,因为它们可以顺应底层物体,以便从复杂表面有效提取目标分子。在这里,我们演示了一种简单而又简便的方法来制造大面积SERS活性,柔性和坚固的基材,用于保形和快速提取和检测痕量分子。通过将Ag纳米棒嵌入到聚二甲基硅氧烷(PDMS)聚合物中来制造新型SERS基板。嵌入AgNRs的SERS底物对所用分析物表现出高灵敏度和极高的重现性,这表明它可直接用于现场应用的痕量检测。在机械拉伸应变条件下,在这些柔性基板上进行了原位SERS测量。我们的结果表明,柔性SERS基板可承受高达30%的拉伸应变,而不会失去SERS性能。通过简单的“粘贴和剥离”方法直接从果皮中直接提取痕量(〜10〜(-9)g / cm〜2)的thiram农药,证明了AgNRs嵌入PDMS SERS基质的功能。

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