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Liquid-liquid interfacial self-assembled Au NP arrays for the rapid and sensitive detection of butyl benzyl phthalate (BBP) by surface-enhanced Raman spectroscopy

机译:液液界面自组装Au NP阵列,用于通过表面增强拉曼光谱法快速和敏感检测邻苯二甲酸丁酯(BBP)

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摘要

Recent years have seen a large number of incidents involving the contamination of liquor with phthalate plasticizers (PAEs). There is therefore an urgent need to develop novel analytical strategies for the rapid and sensitive detection of PAEs. The PAE butyl benzyl phthalate (BBP) is very harmful to the human body, so we developed a surface-enhanced Raman spectroscopy (SERS) platform for the rapid detection of BBP in liquor based on liquid-liquid extraction and the simultaneous self-assembly of arrays of Au nanoparticles (Au NPs) at an organic/aqueous interface. The self-assembly of Au NPs occurs under the influence of the surface tension at the interface between the immiscible solvents. In the first step of the strategy, cyclohexane (CYH) is mixed with BBP-containing liquor to extract the BBP. Then the self-assembly of Au NPs at an organic/aqueous interface is induced using the CYH supernatant as the organic phase, a colloid of Au NPs as the aqueous phase, and ethanol as the inducer. During this process, the BBP molecules extracted from the liquor participate directly in the Au NP self-assembly process, which causes the analytes to be loaded into SERS-active nanogaps in the Au NP arrays, thus permitting the sensitive detection of BBP. BBP levels as low as 1.3 mg/kg in the liquor were detected using this method. Fifteen batches of the assembled SERS platform produced a relative standard deviation of 10.58% in the SERS intensity of the peak at 1178 cm(-1) generated in the presence of 0.08 ppm crystal violet, indicating that this strategy possesses good reproducibility. Furthermore, interfacial assembly allowed the dual-analyte detection of BBP in the organic phase and an edible pigment (sunset yellow) in the aqueous phase to be achieved with high sensitivity and credible reproducibility using the SERS platform. Interfacial self-assembled SERS-active arrays therefore show great potential for the rapid and sensitive in situ detection of BBP in liquor samples.
机译:近年来,涉及含有邻苯二甲酸酯增塑剂(PAES)的液体污染的大量事件。因此,迫切需要开发新的分析策略,用于快速敏感的PAES检测。邻苯二甲酸酯(BBP)对人体非常有害,所以我们开发了一种表面增强的拉曼光谱(SERS)平台,用于基于液 - 液提取和同时自组装的液体中的BBP快速检测Au纳米颗粒(Au nps)阵列在有机/水界面处。 Au NP的自组装在不混溶溶剂之间的表面张力的影响下发生。在该策略的第一步中,将环己烷(CyH)与含BBP的液体混合以提取BBP。然后使用CyH上清液作为有机相,作为水相的胶体,作为水相的胶体和乙醇作为诱导剂,诱导Au NP的自组装。在此过程中,从液体中提取的BBP分子直接参与Au NP自组装过程,这使得分析物在Au NP阵列中加载到Sers-活性纳米体中,因此允许BBP的敏感性检测。使用该方法检测液体中低至1.3mg / kg的BBP水平。十五批组装的SERS平台在存在于0.08ppm水晶紫存在下产生的峰值的峰值的峰值的相对标准偏差为10.58%,表明该策略具有良好的再现性。此外,界面组装允许使用SERS平台的高灵敏度和可靠的再现性,实现水相中的有机相和可食用颜料(日落黄色)的双分析物检测。因此,界面自组装的SERS-活性阵列显示出液体样品中BBP的快速和敏感的巨大潜力。

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