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Rapid detection of vegetable cooking oils adulterated with inedible used oil using fluorescence quenching method with aqueous CTAB-coated quantum dots

机译:带有CTAB涂层量子点的荧光猝灭法快速检测掺有不可食用废油的蔬菜食用油

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摘要

Vegetable cooking oils adulterated with inedible used oils or impure oils have posed a severe food safety problem. Current detection methods cannot meet the needs for rapid detection of adulterated oils on line or in field. Therefore, the objective of this research was to develop a rapid optical sensing method based on fluorescence quenching of CdSe/ZnS quantum dots (QDs) for identification of adulterated vegetable cooking oils. High quality hydrophilic photoluminescent nanoparticles were synthesized by encapsulating hydrophobic QDs into the micellar structure of an amphiphilic surfactant cetyltrimethyl ammonium bromide (CTAB) via phase transfer method. TEM, AFM, and fluorescence spectroscopy were used to characterize the prepared CTAB-coated QDs. Oil samples were first captured into the core of the two-layer-structural micelle and then the fluorescence of CTAB-coated QDs, working as fluorescence probes, was selectively quenched by components of the adulterated oils. Heavy metal ions and free radicals were presumed to be main quenchers. After quenching for 1 min, fluorescence intensity was measured and converted to quenching percentage to determine the adulteration concentration. The results showed that in comparison with oil-soluble QDs, water-soluble CTAB-coated QDs had a greater ability to identify oil adulteration. A good quantitative relationship between quenching percentage and adulteration concentration (y = 5.96x + 14.99; R-2 =0.94) was obtained. The sensitive, simple and low-cost sensing method did not require sample pretreatment and could detect refined used oils at 0.4% or higher concentrations in soybean oil within 2 min, showing great potentials for rapid screening of used oils and quantitative analysis of used oil adulteration in field. (C) 2014 Elsevier B.V. All rights reserved.
机译:掺有不可食用的废油或不纯油的蔬菜食用油构成了严重的食品安全问题。当前的检测方法不能满足在线或现场快速检测掺假油的需求。因此,本研究的目的是开发一种基于CdSe / ZnS量子点(QDs)荧光猝灭的快速光学传感方法,用于鉴定掺假蔬菜食用油。通过相转移法将疏水性量子点封装到两亲性表面活性剂十六烷基三甲基溴化铵(CTAB)的胶束结构中,合成了高质量的亲水性光致发光纳米粒子。 TEM,AFM和荧光光谱用于表征制备的CTAB涂层QD。首先将油样品捕获到两层结构胶束的核心中,然后通过掺假油的成分选择性淬灭用作荧光探针的CTAB涂层量子点的荧光。重金属离子和自由基被认为是主要的淬灭剂。淬灭1分钟后,测量荧光强度并将其转换为淬灭百分比以确定掺杂浓度。结果表明,与油溶性量子点相比,水溶性CTAB包覆的量子点具有更高的识别石油掺假的能力。获得了淬灭百分数与掺杂浓度之间的良好定量关系(y = 5.96x + 14.99; R-2 = 0.94)。灵敏,简单且低成本的检测方法无需样品预处理,并且可以在2分钟内检测出大豆油中0.4%或更高浓度的精制废油,显示出快速筛选废油和对废油掺假进行定量分析的巨大潜力在现场。 (C)2014 Elsevier B.V.保留所有权利。

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