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首页> 外文期刊>Analytical chemistry >Nanosemiconductor-Based Photocatalytic Vapor Generation Systems for Subsequent Selenium Determination and Speciation with Atomic Fluorescence Spectrometry and Inductively Coupled Plasma Mass Spectrometry
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Nanosemiconductor-Based Photocatalytic Vapor Generation Systems for Subsequent Selenium Determination and Speciation with Atomic Fluorescence Spectrometry and Inductively Coupled Plasma Mass Spectrometry

机译:基于纳米半导体的光催化蒸汽发生系统,用于随后的硒的原子荧光光谱和电感耦合等离子体质谱法测定和形态分析

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摘要

We reported novel Ag-TiO_(2)- and ZrO_(2)-based photocatalytic vapor generation (PCVG) systems as effective sample introduction techniques for further improving the sensitivity of the atomic spectrometric determination of selenium for the first time, in which the conduction band electron served as a "reductant" to reduce selenium species including Se~(VI) and convert them directly into volatile H_(2)Se, which was easily separated from the sample matrix and underwent more effectively subsequent atomization and/or ionization. These two PCVG systems helped us to overcome the problem encountered in the most conventional KBH_(4)/OH~(-)-H~(+) system, in that Se~(VI) was hardly converted into volatile selenium species without the aid of prereduction procedures. The limits of detection (LODs) (3sigma) of the four most typical Se~(IV), Se~(VI), selenocystine ((SeCys)_(2)), and selenomethionine (SeMet) species were, respectively, down to 1.2, 1.8, 7.4, and 0.9 ng mL~(-1) in UV/Ag-TiO_(2)-HCOOH, and 0.7, 1.0, 4.2, and 0.5 ng mL~(-1) in UV/ZrO_(2)-HCOOH with the relative standard deviations (RSDs) lower than 5.1percent (n velence 9 at 1 (mu)g mL~(-1)) when using atomic fluorescence spectrometry (AFS) under flow injection mode. They reached 10, 14, 18, and 8 pg mL~(-1) in UV/Ag-TiO_(2)-HCOOH, and 6, 7, 10, and 5 pg mL~(-1) in UV/ZrO_(2)-HCOOH with the RSDs lower than 4.4percent (n velence 9 at 10 ng mL~(-1)) when using inductively coupled plasma mass spectrometry (ICPMS). After the two PCVG systems were validated using certified reference materials GBW(E)080395 and SELM-1, they were applied to determine the total Se in the selenium-enriched yeast sample and used as interfaces between high-performance liquid chromatography (HPLC) and AFS or ICPMS for selenium speciation in the water- and/or enzyme-extractable fractions of the selenium-enriched yeast.
机译:我们报道了新颖的基于Ag-TiO_(2)和ZrO_(2)的光催化蒸汽发生(PCVG)系统,作为有效的样品引入技术,首次进一步提高了原子光谱法测定硒的灵敏度,其中传导带电子充当“还原剂”,以还原包括Se〜(VI)在内的硒,并将其直接转化为挥发性H_(2)Se,该H_(2)Se易于从样品基质中分离出来,并更有效地进行随后的雾化和/或电离。这两个PCVG系统帮助我们克服了最常规的KBH_(4)/ OH〜(-)-H〜(+)系统中遇到的问题,因为在没有帮助的情况下,Se〜(VI)很难转化为挥发性硒还原程序。四种最典型的Se〜(IV),Se〜(VI),硒代半胱氨酸((SeCys)_(2))和硒代蛋氨酸(SeMet)的检出限(LODs)(3sigma)分别降至在UV / Ag-TiO_(2)-HCOOH中为1.2、1.8、7.4和0.9 ng mL〜(-1),在UV / ZrO_(2)中为0.7、1.0、4.2和0.5 ng mL〜(-1) -HCOOH,在流动注射模式下使用原子荧光光谱法(AFS)时,相对标准偏差(RSD)低于5.1%(在1μgmL〜(-1)处的nvelence 9)。在UV / Ag-TiO_(2)-HCOOH中达到10、14、18和8 pg mL〜(-1),在UV / ZrO_(6)中达到6、7、10和5 pg mL〜(-1)。 2)-使用电感耦合等离子体质谱法(ICPMS)时RSD低于4.4%的HCOOH(在10 ng mL〜(-1)下的nvelence 9)。在使用认证的参考材料GBW(E)080395和SELM-1对两个PCVG系统进行验证后,将它们用于确定富硒酵母样品中的总Se,并用作高效液相色谱(HPLC)和高效液相色谱(HPLC)与AFS或ICPMS用于富硒酵母的水和/或酶提取级分中的硒形态分析。

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