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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

机译:多巴胺改性的磁性石墨烯作为金属离子的预浓缩的可回收吸附剂,通过泡腾辅助分散微固相提取方法

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摘要

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 mu g L-1, and the limits of detection were obtained as 0.5, 0.1, and 0.7 mu g 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.
机译:用多巴胺(GO-Fe3O4 -Da)改性纳米磁性石墨烯氧化物通过非常简单的程序合成。使用Go-Fe3O4 -DA作为新的吸附剂,利用泡泡辅助分散微固相提取方法,用于预先浓缩Cu(II),Pb(II)和Ni(II)离子的前进。通过FT-IR,Fe-SEM,EDX和XRD分析研究吸附剂的结构特征。 Go-Fe3O4 -Da的快速分散和高吸附能力以及通过磁体从水相的快速分离,导致靶金属离子的提取时间的降低。实际上,在很短的时间段内获得高提取百分比。在这项工作中,对于所提出的方法计算的相对标准偏差(RSD; n = 3)分别为PB(II),Cu(II)和Ni(II)离子的1.09,1.25和1.03%,校准曲线在0.25至50μg1-1的范围内动态线性,获得检测限为0.5,0.1和0.7μgl-1。该程序也是在真正的香肠(草药和肉类)样本和水样中实施的,使得在用复杂的基质解决真实样品中提出的方法的成功。

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