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Furnace Atomization Plasma Ionization Mass Spectrometry

机译:炉原子化等离子体电离质谱

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Development and initial characterization of FAPES as anion source for elemental mass spectrometry is presented. The source is configured with an integrated contact cuvette in which a 40 MHz He plasma is sustained at atmospheric pressure. A differentially pumped interface consisting of a stainless steel sampling tube (0.5 mm i.d.)and tandem skimmer cone serves to sample the plasma from the open end of the cuvette. Mass spectra, characterizing plasma species with the furnace at ambient and elevated temperatures, are relatively structureless and show no evidence of He↑(+), He2↑(+), or carbonaceous ions. Transient ion signals, generated during the atomization of a number of analytes introduced in solution form, reveal that the plasma contains sufficiently energetic species to ionize elements having ionization potentials as high as ;10.45 eV (iodine). Significant ionization does not occur in the absence of the plasma, nor in the extraction interface. Using Pb as a test element, acceptable isotopic abundances can be obtained, with an estimated absolute limit of detection of 10 pg (2 ng/mL relative). Future directions are discussed.
机译:介绍了FAPES作为元素质谱的阴离子源的开发和初步表征。该源配置有集成的接触池,其中40 MHz He等离子体保持在大气压下。由不锈钢采样管(内径0.5 mm)和串联分离器锥组成的差分泵接口用于从比色皿的开口端采样血浆。质谱图描述了在环境温度和升高的温度下使用熔炉的等离子体物种的相对结构,并且没有显示He↑(+),He2↑(+)或含碳离子的证据。在以溶液形式引入的许多分析物的雾化过程中产生的瞬态离子信号表明,等离子体中包含的高能物质足以电离具有高达10.45 eV(碘)的电离势的元素。在没有等离子体的情况下,在萃取界面上也不会发生明显的电离。使用Pb作为测试元素,可以获得可接受的同位素丰度,估计的绝对检测极限为10 pg(相对2 ng / mL)。讨论了未来的方向。

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