首页> 外文会议>Saratov Fall Meeting 2016: Optical technologies in biophysics amp; medicine XVIII >Detection of rhodamine 6G in blood and urine using combination of surface-enhanced Raman spectroscopy and liquid-liquid extraction
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Detection of rhodamine 6G in blood and urine using combination of surface-enhanced Raman spectroscopy and liquid-liquid extraction

机译:表面增强拉曼光谱和液液萃取相结合检测血液和尿液中若丹明6G

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The aim of this report is detection of model compound, rhodamine 6G (R6G), in blood and urine samples using surfaceenhanced Raman spectroscopy (SERS) as a detection tool and liquid-liquid extraction (LLE) for improving quality of SERS analysis (SERS-LLE combination). SERS substrate is a plasmonic nanomaterial which possesses drastic increasing of Raman spectrum intensity (10~6-10~8) of any molecule adsorbed onto its surface. Here we used citrate stabilized silver nanoparticles as SERS substrate and synthesized them applying wet chemical approach. Before SERS measurements, blood and urine samples were artificially contaminated with R6G using 50 and 500 ng/mL concentrations for both samples. In order to reduce detectable concentrations of R6G and improve signal-to-noise ratio, we applied LLE which allows us to separate R6G from the matrix mixture and increase the analyte concentration. Four different LLE protocols were used and the most efficient one was found. Obtained results showed usefulness of SERS-LLE combination for chemical analysis of body fluids with level of detectable concentration down to tens ng/mL.
机译:本报告的目的是使用表面增强拉曼光谱(SERS)作为检测工具和液液萃取(LLE)来检测血液和尿液中的模型化合物罗丹明6G(R6G),以提高SERS分析的质量(SERS- LLE组合)。 SERS基质是一种等离子体纳米材料,其吸附在其表面上的任何分子的拉曼光谱强度(10〜6-10〜8)都会急剧增加。在这里,我们使用柠檬酸盐稳定的银纳米颗粒作为SERS基质,并采用湿化学方法合成它们。在进行SERS测量之前,血液和尿液样品均被R6G人工污染,两种样品的浓度分别为50和500 ng / mL。为了降低可检测的R6G浓度并提高信噪比,我们应用了LLE,它使我们能够从基质混合物中分离R6G并增加分析物浓度。使用了四种不同的LLE协议,并且找到了最有效的一种。所得结果表明,SERS-LLE组合物可用于体液的化学分析,可检测浓度低至数十ng / mL。

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