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石墨烯表面增强拉曼散射基底与磁性固相微萃取联用,用于快速检测痕量非法添加剂。

Combination of a graphene SERS substrate and magnetic solid phase micro-extraction used for the rapid detection of trace illegal additives.

机构信息

State Key Laboratory of Supramolecular Structure and Materials, Institute of Theoretical Chemistry, Jilin University, Changchun 130012, P. R. China.

出版信息

Analyst. 2018 Feb 12;143(4):883-890. doi: 10.1039/c7an01547j.

Abstract

Surface enhanced Raman scattering (SERS) is an ultra-sensitive spectroscopy technique, which can provide rich structural information for a great number of molecules, while solid phase micro-extraction (SPME) is an efficient method for sample pretreatment in analytical chemistry, particularly in a micro-system. In the present report, a silver-loaded and graphene-based magnetic composite (FeO@GO@Ag) was fabricated for use as both a SERS-active substrate and SPME material. The π-π stacking and fluorescence quenching abilities of GO make the composite a perfect candidate for SERS in analyzing real-world samples. Therefore, through combining the magnetic nanoparticles with a SPME device, we have developed a pretreatment method named as disperse magnetic solid phase micro-extraction (Dis-MSPME). In comparison to traditional SPME, the proposed Dis-MSPME realized solid phase micro-extraction from a dispersive system and largely improved the extraction efficiency. Furthermore, by combining the advantages of both Dis-MSPME and SERS we have proposed a new detection method called Dis-MSPME-SERS. Finally, as an example, the illegal additive chloramphenicol (CAP) was successfully detected in aqueous solution with low LOQ and LOD values (1.0 × 10 and 1.0 × 10 M, respectively), which was finalized within 10 min based on the proposed Dis-MSPME-SERS method. Therefore, a simpler, more efficient and sensitive approach to realize enrichment, magnetic separation and detection, all-in-one, for the detection of illegal additives has been reported, which will be promising towards the detection of trace amounts of substance in micro-systems.

摘要

表面增强拉曼散射(SERS)是一种超灵敏的光谱技术,它可以为大量分子提供丰富的结构信息,而固相微萃取(SPME)是分析化学中一种有效的样品预处理方法,特别是在微系统中。在本报告中,制备了一种负载银和基于石墨烯的磁性复合材料(FeO@GO@Ag),用作 SERS 活性衬底和 SPME 材料。GO 的π-π堆积和荧光猝灭能力使该复合材料成为分析实际样品中 SERS 的理想候选材料。因此,通过将磁性纳米粒子与 SPME 装置结合,我们开发了一种称为分散固相微萃取(Dis-MSPME)的预处理方法。与传统的 SPME 相比,所提出的 Dis-MSPME 实现了从分散体系中的固相微萃取,并大大提高了萃取效率。此外,通过结合 Dis-MSPME 和 SERS 的优点,我们提出了一种新的检测方法,称为 Dis-MSPME-SERS。最后,作为一个例子,成功地在水溶液中用低 LOQ 和 LOD 值(分别为 1.0×10 和 1.0×10 M)检测到非法添加剂氯霉素(CAP),基于所提出的 Dis-MSPME-SERS 方法,该检测在 10 分钟内完成。因此,报道了一种更简单、更高效、更灵敏的方法,用于实现非法添加剂的富集、磁性分离和检测,所有这些都将有望用于微系统中痕量物质的检测。

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