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多巴胺修饰的磁性氧化石墨烯作为一种可回收的吸附剂,通过鼓泡辅助分散微固相萃取程序用于金属离子的预浓缩。

Dopamine-modified magnetic graphene oxide as a recoverable sorbent for the preconcentration of metal ions by an effervescence-assisted dispersive micro solid-phase extraction procedure.

机构信息

Department of Chemistry, Semnan University, Semnan 35195-363, Iran.

出版信息

Anal Methods. 2020 May 14;12(18):2338-2346. doi: 10.1039/d0ay00522c.

Abstract

Nanomagnetic graphene oxide modified with dopamine (GO-Fe3O4-DA) was synthesized via a very simple procedure. Using GO-Fe3O4-DA as the new adsorbent, the effervescence-assisted dispersive micro solid-phase extraction procedure was exploited for the preconcentrative extraction of Cu(ii), Pb(ii) and Ni(ii) ions. Structural characteristics of the adsorbent were studied via FT-IR, FE-SEM, EDX and XRD analyses. The rapid dispersion and high adsorption capability of GO-Fe3O4-DA, along with the rapid separation of the adsorbent from the aqueous phase by a magnet, led to a decrease in the extraction time of the target metal ions. In effect, high extraction percentages were attained in a very short time period. In this work, the relative standard deviations (RSD; n = 3) calculated for the proposed method were 1.09, 1.25 and 1.03% for the Pb(ii), Cu(ii) and Ni(ii) ions, respectively, the calibration curve was dynamically linear in the range of 0.25 to 50 μg L-1, and the limits of detection were obtained as 0.5, 0.1, and 0.7 μg L-1. The procedure was also implemented on real sausage (herbal and meaty) samples and a water sample, vouchsafing the success of the proposed method in tackling real samples with a complicated matrix.

摘要

通过一种非常简单的方法合成了多巴胺修饰的纳米磁性氧化石墨烯(GO-Fe3O4-DA)。采用 GO-Fe3O4-DA 作为新型吸附剂,开发了鼓泡辅助分散微固相萃取程序,用于预浓缩萃取 Cu(ii)、Pb(ii)和 Ni(ii)离子。通过 FT-IR、FE-SEM、EDX 和 XRD 分析研究了吸附剂的结构特征。GO-Fe3O4-DA 的快速分散和高吸附能力,以及通过磁铁快速将吸附剂从水相中分离出来,导致目标金属离子的萃取时间缩短。实际上,在很短的时间内就达到了很高的萃取百分比。在这项工作中,为所提出的方法计算的相对标准偏差(RSD;n = 3)分别为 1.09%、1.25%和 1.03%,用于 Pb(ii)、Cu(ii)和 Ni(ii)离子,校准曲线在 0.25 到 50 μg L-1 的范围内呈动态线性,检出限分别为 0.5、0.1 和 0.7 μg L-1。该方法还应用于实际香肠(草药和肉制)样品和水样,证明了所提出的方法在处理复杂基质的实际样品方面的成功。

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