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Efficient Photochemical Vapor Generation of Molybdenum for ICPMS Detection

机译:ICPMS检测的高效光化学蒸气产生钼

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摘要

Photochemical vapor generation (PVG) of Mo was accomplished using a 19 W high-efficiency flow-through photoreactor operating in a flow injection mode using 30-50% (w/v) formic acid as a reaction medium. The generated volatile product (most probably molybdenum hexacarbonyl) was directed by an argon carrier gas to a plastic gas-liquid separator and introduced into the spray chamber of an inductively coupled plasma mass spectrometer for detection. Particular attention was paid to the determination of overall PVG efficiency relative to that for liquid nebulization. Utilizing a sample flow rate of 1.25 mL min(-1), corresponding to an irradiation time of 38 s, PVG efficiencies in the range 46-66% were achieved. The efficiency could be further enhanced by the presence of mg L-1 added Fe3+ ions. A limit of detection of 1.2 ng L-1 and precision of 3% (RSD) at 250 ng L-1 were achieved. Interferences from inorganic anions likely to be encountered during analytical application to real samples (NO3-, Cl-, SO42-, NO2-, and ClO4-) were investigated in detail. The accuracy and applicability of this sensitive methodology was successfully verified by analysis of fresh water Standard Reference Material NIST 1643e, two seawater Certified Reference Materials (NASS-7 and CASS-6), and by analysis of two samples of commercial dietary supplements solubilized in formic acid.
机译:使用30-50%(w / v)甲酸作为反应介质,使用19 w高效流动光反应器完成Mo的光化学蒸汽代(PVG)。产生的挥发性产物(大多数可能钼六羰基)由氩气载气引导到塑料气体 - 液体分离器中,并引入电感耦合等离子体质谱仪的喷射室以进行检测。相对于液态雾化的整体PVG效率,特别注意的是特别注意。利用1.25mL min(-1)的样品流速,对应于38 s的照射时间,达到46-66%范围内的PVG效率。通过Mg L-1加入Fe 3 +离子的存在,可以进一步提高效率。达到了1.2ng L-1的检测限,达到250ng L-1的3%(RSD)。详细研究了在分析应用中可能遇到的无机阴离子的干扰(NO 3,CL-,SO42-,NO2-和CLO4-)。通过分析淡水标准参考资料NIST 1643E,两种海水认证参考资料(NASS-7和CASS-6)的分析成功验证了这种敏感方法的准确性和适用性,并通过分析了肉体中溶解的两种商业膳食补充剂样品酸。

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  • 来源
    《Analytical chemistry》 |2018年第19期|共8页
  • 作者单位

    Czech Acad Sci Inst Analyt Chem Veveri 97 Brno 60200 Czech Republic;

    Natl Res Council Canada 1200 Montreal Rd Ottawa ON K1A 0R6 Canada;

    Czech Acad Sci Inst Analyt Chem Veveri 97 Brno 60200 Czech Republic;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
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