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在不锈钢网上生长的石墨烯作为高效吸附剂,用于从水样中吸附萃取多环芳烃。

Graphene grown on stainless steel mesh as a highly efficient sorbent for sorptive microextraction of polycyclic aromatic hydrocarbons from water samples.

机构信息

Department of Chemistry, Faculty of Sciences, Hakim Sabzevari University, Sabzevar, Iran.

Department of Food Nanotechnology, Research Institute of Food Science and Technology, Mashhad, Iran.

出版信息

Anal Chim Acta. 2017 Nov 22;994:29-37. doi: 10.1016/j.aca.2017.08.049. Epub 2017 Sep 13.

DOI:10.1016/j.aca.2017.08.049
PMID:29126466
Abstract

In this study, graphene grown on stainless steel mesh efficiently incorporates the advanced properties of graphene in the form of an ultra-thin coating with the open geometry of the substrate, resulting in a highly sensitive and fast sorptive device capable of extracting target analytes directly from sample matrices. The synthesis of graphene on the stainless steel mesh was confirmed by scanning electron microscopy (SEM) and transmission electron microscopy (TEM). The advantages of the new microextraction device have been investigated for the determination of polycyclic aromatic hydrocarbons (PAHs) in environmental water samples in combination with gas chromatography-flame ionization detector (GC-FID). The factors affecting the extraction efficiency such as stirring speed, extraction time, ionic strength and desorption conditions, were investigated and the optimal extraction conditions were established. Under the optimal extraction condition, linearity was in the range of 0.003-100 ng mL with a correlation coefficient of 0.9923-0.9985. The limits of detection (LODs) of the developed method are obtained between 1 and 3 pg mL. The repeatability was assessed at two concentration levels (0.01 and 10 ng mL) and the relative standard deviations (RSDs) obtained were 4.9-8.7%. The preparation reproducibility of sorbent device, evaluated with the RSDs, was in the range of 7.3-10.2% (n = 5) in one batch, and 8.3-11.0% (n = 5) among different batches. Finally, the proposed method is applied for the determination of the target PAHs in the real water samples.

摘要

在这项研究中,生长在不锈钢网格上的石墨烯以超薄涂层的形式高效地结合了石墨烯的先进特性,同时保留了基底的开放结构,从而形成了一种高灵敏度和快速的吸附装置,能够直接从样品基质中提取目标分析物。通过扫描电子显微镜 (SEM) 和透射电子显微镜 (TEM) 确认了不锈钢网格上石墨烯的合成。该新型微萃取装置的优点已通过与气相色谱-火焰离子化检测器 (GC-FID) 结合,在环境水样中多环芳烃 (PAHs) 的测定中得到了研究。考察了影响萃取效率的因素,如搅拌速度、萃取时间、离子强度和洗脱条件,并建立了最佳萃取条件。在最佳萃取条件下,线性范围为 0.003-100ng mL,相关系数为 0.9923-0.9985。该方法的检出限 (LOD) 在 1-3 pg mL 之间。在两个浓度水平 (0.01 和 10 ng mL) 下评估了方法的重复性,得到的相对标准偏差 (RSD) 为 4.9-8.7%。采用 RSD 评估了吸附剂装置的制备重现性,在一批次内的范围为 7.3-10.2% (n=5),在不同批次间的范围为 8.3-11.0% (n=5)。最后,该方法应用于实际水样中目标 PAHs 的测定。

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