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首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >A magnetic MoS2-Fe3O4 nanocomposite as an effective adsorbent for dispersive solid-phase microextraction of lead(II) and copper(II) prior to their determination by FAAS
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A magnetic MoS2-Fe3O4 nanocomposite as an effective adsorbent for dispersive solid-phase microextraction of lead(II) and copper(II) prior to their determination by FAAS

机译:磁性MOS2-Fe3O4纳米复合物作为FAAS测定之前的用于分散固相微萃取的有效吸附剂,以及铅(II)和铜(II)

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摘要

The authors describe the preparation of a nanocomposite (mag-MoS2-Fe3O4) that was prepared from molybdenum disulfide (MoS2) and magnetic Fe3O4 nanoparticles by a hydrothermal method in an inert atmosphere. The composite is shown to be a viable magnetic adsorbent for dispersive solid phase microextraction of lead(II) and copper(II) ions from water and plant samples. The nanocomposite was characterized by FT-IR, Raman spectroscopy, XRD, SEM, and BET methods. The factors affecting the extraction recovery of the analytes, including the pH value, type of dispersive solvent, sample volume, type and volume of eluent solution, and interfering ions, were optimized. Flame atomic absorption spectrometry was then used for quantitation. Figures of merit of this method include a preconcentration factor of 50 for lead(II) and 35 for Cu(II), LODs of 3.3 mu g.L-1 for lead(II) and of 1.8 mu g.L-1 for Cu(II), and RSDs of 4.9 and 1.5%, respectively. The method was used to preconcentrate the analytes from plant and water samples prior to their determination by FAAS. It was then validated by analyzing certified reference materials (water and plant), and this resulted in good accuracy.
机译:作者描述了通过在惰性气氛中通过水热法制备由二硫化钼(MOS2)和磁Fe3O4纳米颗粒制备的纳米复合材料(MAG-MOS2-FE3O4)的制备。该复合材料被示出为可行的磁性吸附剂,用于从水和植物样品的铅(II)和铜(II)离子的分散固相微萃取剂。纳米复合材料的特征在于FT-IR,拉曼光谱,XRD,SEM和BET方法。优化了影响分析物的提取恢复的因素,包括pH值,分散溶剂,样品体积,洗脱液溶液的样品体积,类型和体积,以及干扰离子,并进行干扰离子。然后使用火焰原子吸收光谱法进行定量。该方法的优点图包括用于铅(II)和35的预浓度为50,用于Cu(II),对于Cu(II)的铅(II)和1.8μgG11的LOD为3.3μgl-1,和RSDS为4.9和1.5%。该方法用于在FAAS确定之前从植物和水样中预先培养分析物。然后通过分析认证的参考资料(水和工厂)进行验证,这导致了良好的准确性。

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