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Capillary Photoionization: A High Sensitivity Ionization Method for Mass Spectrometry

机译:毛细管光电离:一种用于质谱的高灵敏度电离方法

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摘要

We present a capillary photoionization (CPI) method for mass spectrometric (MS) analysis of liquid and gaseous samples. CPI utilizes a heated transfer capillary with a vacuum ultraviolet transparent MgF_2 window, through which vacuum UV light (10 eV) from an external source enters the capillary. The liquid or gaseous sample, together with dopant, is introduced directly into the heated transfer capillary between the atmosphere and the vacuum of the MS. Since the sample is vaporized and photoionized inside the capillary, ion transmission is maximized, resulting in good overall sensitivity for nonpolar and polar compounds. As in atmospheric pressure photoionization, ionization in CPI occurs either by proton transfer or by charge exchange reactions. The feasibility of CPI was demonstrated with selected nonpolar and polar compounds. A particular advantage of CPI is that it enables the analysis of nonvolatile and nonpolar compounds in liquid samples with high ionization efficiency. This is not possible with existing capillary ionization methods. The performance of CPI as an interface between GC and MS and its applicability for the analysis of steroids in biological samples are also demonstrated. The GC-CPI-MS method shows good chromatographic resolution, linearity (R~2 > 0.993), limits of detection (LOD) in the range of 2-6 pg/mL and repeatability of injection with relative standard deviations of 4-15%.
机译:我们提出一种用于液体和气体样品的质谱(MS)分析的毛细管光电离(CPI)方法。 CPI使用带有真空紫外线透明MgF_2窗口的加热传输毛细管,来自外部光源的真空紫外线(10 eV)通过该窗口进入毛细管。液态或气态样品与掺杂剂一起直接引入到大气和MS真空之间的加热传输毛细管中。由于样品在毛细管内蒸发和光电离,因此离子传递最大化,从而对非极性和极性化合物具有良好的整体灵敏度。与大气压光电离一样,CPI的电离通过质子转移或电荷交换反应发生。使用选定的非极性和极性化合物证明了CPI的可行性。 CPI的一个特殊优势在于,它能够以高电离效率分析液体样品中的非挥发性和非极性化合物。现有的毛细管电离方法不可能做到这一点。还证明了CPI作为GC和MS之间的界面的性能及其在生物样品中类固醇分析中的适用性。 GC-CPI-MS方法具有良好的色谱分离度,线性(R〜2> 0.993),检测限(LOD)在2-6 pg / mL范围内,并且进样重复性相对标准偏差为4-15% 。

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