首页> 外文期刊>Asian Journal of Chemistry: An International Quarterly Research Journal of Chemistry >Simultaneous Determination of Copper and Iron in Biological Samples with 1-(2-Pyridylazo)-2-naphthol in Anionic AOT Micellar Solution Using Derivative Spectrophotometry
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Simultaneous Determination of Copper and Iron in Biological Samples with 1-(2-Pyridylazo)-2-naphthol in Anionic AOT Micellar Solution Using Derivative Spectrophotometry

机译:导数分光光度法同时测定阴离子AOT胶束溶液中1-(2-吡啶偶氮)-2-萘酚的生物样品中铜和铁

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摘要

A simple and selective derivative spectrophotometric method using 1 -(2-pyridylazo)-2-naphthol (PAN) in bis-2-ethy] hexyl sulfosuccinate (AOT) micellar solution was developed for determination of copper and iron. The effect of various parameters on the sensitivity and selectivity of the method was investigated and optimum conditions were selected. The pH = 2.5 was chosen as an optimum in order to reduce the interference effects. At this pH, in addition to Cu(II) and Fe(III), only Ni(II), Co(II) and Co(III) may be react with PAN and interfere the determination of copper and iron. The concentrations of nickel and cobalt in the most samples usually are very low and thus have no interference on the determination of copper and iron. In the presence of AOT the absorption spectrum of Fe(III)-PAN complex shift to higher wavelengths and the overlapping with Cu-PAN spectrum was decreased. In this condition, in ordinary spectrophotometry, Cu(II) has no interference in the determination of iron, but Fe(III) completely interfere the determination of copper. In the first order derivative mode the spectra of Cu(II)-PAN and Fe(III)-PAN complexes completely resolved together and selectively can determine them. The zero and first order derivative spectrophotometric calibration curves were drawn at working wavelengths of 558 and 580 nm for copper and 600 and 630 nm for iron. Molar absorbtivity were found 1.82 x 10~4 and 2.75 x 10~4 L mol~(-1) cm~(-1), respectively for Cu(II)-PAN and Fe(III)-PAN complexes. In derivative mode, the limits of detection (LOD) for Cu(II) and Fe(III) were 0.038 and 0.025 μg mL~(-1), respectively. The method has been applied to human hair and serum samples successfully.
机译:建立了一种简单,选择性的分光光度法,该方法使用1-(2-吡啶基偶氮)-2-萘酚(PAN)在双-2-乙基]磺基琥珀酸己二酸酯(AOT)胶束溶液中测定铜和铁。研究了各种参数对方法灵敏度和选择性的影响,并选择了最佳条件。选择pH = 2.5作为最佳值,以减少干扰影响。在此pH值下,除了Cu(II)和Fe(III)外,只有Ni(II),Co(II)和Co(III)可能会与PAN反应并干扰铜和铁的测定。大多数样品中镍和钴的浓度通常很低,因此对铜和铁的测定没有干扰。在存在AOT的情况下,Fe(III)-PAN络合物的吸收光谱向更高的波长移动,并且与Cu-PAN光谱的重叠减少。在这种条件下,在普通分光光度法中,Cu(II)对铁的测定没有干扰,而Fe(III)则完全干扰了铜的测定。在一阶导数模式下,Cu(II)-PAN和Fe(III)-PAN配合物的光谱完全分辨在一起,可以有选择地确定它们。在铜的工作波长为558和580 nm处,铁的工作波长为600和630 nm处绘制了零阶和一阶导数分光光度法校准曲线。 Cu(II)-PAN和Fe(III)-PAN配合物的摩尔吸光度分别为1.82 x 10〜4和2.75 x 10〜4 L mol〜(-1)cm〜(-1)。在导数模式下,Cu(II)和Fe(III)的检出限(LOD)分别为0.038和0.025μgmL〜(-1)。该方法已成功应用于人的头发和血清样品。

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