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Supramolecular Solvent-based Microextraction of Copper at Trace Levels Before Determination by Microsampling Flame Atomic Absorption Spectrometry

机译:基于超分子溶剂的微量微量铜萃取,然后通过微量进样火焰原子吸收光谱法测定

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摘要

A microextraction method, based on the complexation of Cu(II) with N-Benzoyl-N,N-diisobutylthiourea, followed by phase separation by assistance of supramolecular solvents, was developed. The supramolecular solvent of tetrahydrofuran and 1-decanol enhanced the hydrogen bonding, in addition to the dispersion action leading to a quick phase separation with efficient preconcentration of copper(II) at trace levels. The developed procedure works at weak acidic medium (pH 3). The analytical parameters were optimized. The influence of concomitant ions on the recoveries of copper was also investigated. The proposed supramolecular-based procedure exhibits a limit of detection (LOD) of 0.46 mu g L-1 as well as quantitative recoveries from water certified reference materials. The proposed procedure was applied to the determination of copper at trace levels in water samples obtained from various sources in Turkey.
机译:基于Cu(II)与N-苄基-N,N-二异丁基硫脲的络合,然后借助超分子溶剂的相分离,开发了一种微萃取方法。除分散作用外,四氢呋喃和1-癸醇的超分子溶剂还增强了氢键作用,从而导致了快速的相分离,并有效地富集了痕量的铜(II)。开发的程序可在弱酸性介质(pH 3)下工作。分析参数进行了优化。还研究了伴随离子对铜回收率的影响。提议的基于超分子的方法显示出0.46μgL-1的检出限(LOD)以及从水认证参考材料中的定量回收率。拟议的程序用于测定土耳其各种来源的水样中痕量铜。

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