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首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Chromatographic separation and detection of target analytes from complex samples using inkjet printed SERS substrates
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Chromatographic separation and detection of target analytes from complex samples using inkjet printed SERS substrates

机译:使用喷墨印刷的SERS基质色谱分离和检测复杂样品中的目标分析物

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摘要

In principle, surface enhanced Raman spectroscopy (SERS) is thought to provide unique identification of a target analyte, even in complex samples or in the presence of multiple analytes. In practice, however, this is not always true for real-world samples due to various forms of interference. In this report, we build upon our previous work on inkjet-printed SERS substrates by using paper and polymer membranes to integrate sample cleanup and analyte separation with SERS detection. Inkjet-printed paper SERS substrates provide a highly sensitive chemical detection platform of unprecedented cost and simplicity. In addition, paper inherently provides unique capabilities, such as capillary-actuated fluid transport and selective molecular retention. Utilizing these properties, we demonstrate two-dimensional chromatographic separation and SERS detection on inkjet-printed paper SERS substrates. Then, we leverage the separation properties of paper and polymer membranes for real applications that feature complex sample matrices, including the detection of down to 5 ppm melamine in infant formula, as well as the quantification of nanograms of heroin in samples contaminated with a highly fluorescent background. The results presented here demonstrate that inkjet-printed paper SERS devices not only provide advantages in terms of sensitivity and cost, but the paper provides inherently integrated sample cleanup capabilities that are not available in traditional SERS substrates and microfluidic SERS devices. These unique capabilities of paper SERS devices enable the identification of targeted analytes even in complex real-world samples.
机译:原则上,即使在复杂样品中或在存在多种分析物的情况下,表面增强拉曼光谱(SERS)仍可提供目标分析物的独特识别。然而,实际上,由于各种形式的干扰,对于现实世界的样本并不总是如此。在本报告中,我们通过使用纸和聚合物膜将样品净化和分析物分离与SERS检测结合在一起,在以前的喷墨印刷SERS基材上开展了工作。喷墨印刷的纸质SERS基材提供了前所未有的成本和简便性的高度灵敏的化学检测平台。此外,纸张固有地提供了独特的功能,例如毛细管驱动的流体传输和选择性分子保留。利用这些特性,我们证明了在喷墨印刷的纸质SERS基底上的二维色谱分离和SERS检测。然后,我们将纸和聚合物膜的分离特性用于具有复杂样品基质特征的实际应用中,包括检测婴儿配方奶粉中低至5 ppm的三聚氰胺,以及对被高荧光污染的样品中海洛因的纳克定量背景。此处显示的结果表明,喷墨打印纸质SERS设备不仅在灵敏度和成本方面都具有优势,而且纸张还提供了固有的集成式样品净化功能,这是传统SERS基板和微流体SERS设备无法提供的。纸质SERS设备的这些独特功能,即使在复杂的现实世界样品中,也可以识别目标分析物。

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