Department of Biomedical Engineering and Environmental Sciences, National Tsing Hua University, 30013 Hsinchu, Taiwan.
Center for Measurement Standards, Industrial Technology Research Institute, 30011 Hsinchu, Taiwan.
Anal Chim Acta. 2014 Jan 2;806:165-71. doi: 10.1016/j.aca.2013.11.008. Epub 2013 Nov 14.
We have developed an on-line sequential photocatalyst-assisted digestion and vaporization device (SPADVD), which operates through the nano-TiO2-catalyzed photo-oxidation and reduction of selenium (Se) species, for coupling between anion exchange chromatography (LC) and inductively coupled plasma mass spectrometry (ICP-MS) systems to provide a simple and sensitive hyphenated method for the speciation analysis of Se species without the need for conventional chemical digestion and vaporization techniques. Because our proposed on-line SPADVD allows both organic and inorganic Se species in the column effluent to be converted on-line into volatile Se products, which are then measured directly through ICP-MS, the complexity of the procedure and the probability of contamination arising from the use of additional chemicals are both low. Under the optimized conditions for SPADVD - using 1g of nano-TiO2 per liter, at pH 3, and illuminating for 80 s - we found that Se(IV), Se(VI), and selenomethionine (SeMet) were all converted quantitatively into volatile Se products. In addition, because the digestion and vaporization efficiencies of all the tested selenicals were improved when using our proposed on-line LC/SPADVD/ICP-MS system, the detection limits for Se(IV), Se(VI), and SeMet were all in the nanogram-per-liter range (based on 3σ). A series of validation experiments - analysis of neat and spiked extracted samples - indicated that our proposed methods could be applied satisfactorily to the speciation analysis of organic and inorganic Se species in the extracts of Se-enriched supplements.
我们开发了一种在线顺序光催化剂辅助消解和蒸发装置(SPADVD),该装置通过纳米 TiO2 催化硒(Se)物种的光氧化和还原来运行,用于将阴离子交换色谱(LC)和电感耦合等离子体质谱(ICP-MS)系统耦合,提供一种简单灵敏的硒形态分析方法,无需传统的化学消解和蒸发技术。因为我们提出的在线 SPADVD 允许柱流出物中的有机和无机 Se 物种在线转化为挥发性 Se 产物,然后通过 ICP-MS 直接测量,所以该方法的复杂性和因使用额外化学品而引起的污染概率都很低。在 SPADVD 的优化条件下——每升使用 1 克纳米 TiO2,在 pH 3 下,光照 80 秒——我们发现 Se(IV)、Se(VI)和硒代蛋氨酸(SeMet)都被定量转化为挥发性 Se 产物。此外,因为使用我们提出的在线 LC/SPADVD/ICP-MS 系统提高了所有测试硒代物的消解和蒸发效率,所以 Se(IV)、Se(VI)和 SeMet 的检测限都在纳克/升范围内(基于 3σ)。一系列验证实验——对未处理和加标提取样品的分析——表明,我们提出的方法可以满意地应用于富硒补充剂提取物中有机和无机 Se 形态的形态分析。