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Thin Layer Chromatography Coupled with Surface-Enhanced Raman Scattering as a Facile Method for On-Site Quantitative Monitoring of Chemical Reactions

机译:薄层色谱结合表面增强拉曼散射作为现场定量监测化学反应的简便方法

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摘要

By coupling surface-enhanced Raman spectroscopy (SERS) with thin layer chromatography (TLC), a facile and powerful method was developed for on-site monitoring the process of chemical reactions. Samples were preseparated on a TLC plate following a common TLC procedure, and then determined by SERS after fabricating a large-area, uniform SERS substrate on the TLC plate by spraying gold nanoparticles (AuNPs). Reproducible and strong SERS signals were obtained with substrates prepared by spraying 42-nm AuNPs at a density of 5.54 × 10~(10) N/cm~2 on the TLC plate. The capacity of this TLC-SERS method was evaluated by monitoring a typical Suzuki coupling reaction of phenyl-boronic acid and 2-bromopyridine as a model. Results showed that this proposed method is able to identify reaction product that is invisible to the naked eye, and distinguish the reactant 2-bromopyridine and product 2-phenylpyridine, which showed almost the same retention factors (R_f). Under the optimized conditions, the peak area of the characteristic Raman band (755 cm~(-1)) of the product 2-phenylpyridine showed a good linear correlation with concentration in the range of 2-200 mg/L (R~2 = 0.9741), the estimated detection limit (1 mg/L 2-phenylpyridine) is much lower than the concentration of the chemicals in the common organic synthesis reaction system, and the product yield determined by the proposed TLC-SERS method agreed very well with that by UPLC-MS/MS. In addition, a new byproduct in the reaction system was found and identified through continuous Raman detection from the point of sample to the solvent front. This facile TLC-SERS method is quick, easy to handle, low-cost, sensitive, and can be exploited in on-site monitoring the processes of chemical reactions, as well as environmental and biological processes.
机译:通过将表面增强拉曼光谱(SERS)与薄层色谱(TLC)耦合,开发了一种简便而强大的方法,用于现场监测化学反应过程。按照常见的TLC程序在TLC板上预先分离样品,然后通过喷涂金纳米颗粒(AuNPs)在TLC板上制作大面积,均匀的SERS基板后通过SERS确定样品。用在TLC板上以5.54×10〜(10)N / cm〜2的密度喷涂42 nm AuNPs制备的底物可获得可再现的强SERS信号。通过监测典型的苯基硼酸和2-溴吡啶的Suzuki偶联反应作为模型来评估这种TLC-SERS方法的能力。结果表明,该方法能够识别肉眼看不到的反应产物,并区分出反应物2-溴吡啶和产物2-苯基吡啶,它们显示出几乎相同的保留因子(R_f)。在最佳条件下,产物2-苯基吡啶的特征拉曼峰(755 cm〜(-1))的峰面积与浓度在2-200 mg / L范围内呈良好的线性关系(R〜2 = 0.9741),估计的检出限(1 mg / L 2-苯基吡啶)远低于普通有机合成反应系统中化学物质的浓度,并且通过建议的TLC-SERS方法测定的产物收率与通过UPLC-MS / MS。另外,在反应系统中发现了新的副产物,并通过从样品点到溶剂前沿的连续拉曼检测进行鉴定。这种简便的TLC-SERS方法快速,易于操作,成本低廉,灵敏,可用于现场监测化学反应过程以及环境和生物过程。

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