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首页> 外文期刊>Analytical chemistry >Sensitive Colorimetric Visualization of Perfluorinated Compounds Using Poly(ethylene glycol) and Perfluorinated Thiols Modified Gold Nanoparticles
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Sensitive Colorimetric Visualization of Perfluorinated Compounds Using Poly(ethylene glycol) and Perfluorinated Thiols Modified Gold Nanoparticles

机译:使用聚乙二醇和全氟化硫醇修饰的金纳米粒子对全氟化化合物进行比色分析

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摘要

In this work, we have developed a novel sensing strategy employing mixed poly(ethylene glycol)-terminated (PEG-thiols) and perfluoroalkyl-terminated (F-thiols) alkanethiols modified gold nanoparticles (Au@PEG-F NPs) as a probe to detect perfluorinated compounds (PFCs) from water samples. PEG-thiols with high density and long carbon chains make the Au NPs probe well-dispersed in solution and stable even in high concentration of salt solution; F-thiols provide specific fluorous-fluorous interactions to PFCs, which results in adsorption of PFCs on Au@PEG-F NPs. The adsorbed PFCs cause the aggregation of Au@PEG-F NPs probes and thus induce the insolubility of probes and precipitation directly from reaction solution due to the superhydrophobicity of perfluorocarbon monolayers, leading to color and absorbance response of the assay to PFCs. The preparation of the Au@PEG-F NPs probe is very simple, and the colorimetric assay based on this mechanism for the detection of PFCs is selective and convenient. Combined with UV--vis spectrophotometry, the assay demonstrates good sensitivities to PFCs with wide linear range. In the designed concentration range, the response of the colorimetric assay to long-chain PFCs (perfluoroalkyl chain ≥7) is discerned even as the concentration of these PFCs is as low as 10 μg L~(-1). This low-cost and sensitive assay shows great potential to measure total PFCs in water samples. To the best of our knowledge, this is the first application of the specific fluorous--fluorous interactions and Au NPs based probes for colorimetric recognition for PFCs.
机译:在这项工作中,我们开发了一种新颖的传感策略,采用混合的聚乙二醇末端的(PEG-硫醇)和全氟烷基末端的(F-硫醇)链烷硫醇修饰的金纳米粒子(Au @ PEG-F NPs)作为探针从水样中检测全氟化合物(PFC)。具有高密度和长碳链的PEG-硫醇使Au NPs探针很好地分散在溶液中,即使在高浓度的盐溶液中也稳定。 F-硫醇向PFC提供特定的氟-氟相互作用,从而导致PFC吸附在Au @ PEG-F NP上。吸附的PFC导致Au @ PEG-F NPs探针聚集,并由于全氟化碳单层的超疏水性而直接引起探针的不溶性和从反应溶液中沉淀出来,从而导致测定对PFC的颜色和吸收响应。 Au @ PEG-F NPs探针的制备非常简单,并且基于该机制的比色法检测PFC的方法具有选择性和便利性。结合紫外可见分光光度法,该测定法对线性范围宽的PFC具有良好的敏感性。在设计浓度范围内,即使这些PFC的浓度低至10μgL〜(-1),也能辨别出比色测定法对长链PFC(全氟烷基链≥7)的响应。这种低成本,灵敏的测定方法具有测量水样中总PFC的巨大潜力。据我们所知,这是特定的氟-氟相互作用和基于金纳米颗粒的探针首次用于PFC的比色识别。

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