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Atmospheric Pressure Photoionization. 1. General Properties for LC/MS

机译:大气压光电离。 1. LC / MS的常规属性

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In this work, we describe the performance of an atmospheric pressure photoionization (APPI) source for sampling liquid flows. The results presented here primarily focus on the mechanism of direct photoionization (PI), as compared to the dopant mechanism of PI. Measured detection limits for direct APPI were comparable to atmospheric pressure chemical ionization (APCI; e.g., 1 pg for reserpine). The ion signal is linear up to 10 ng injected quantity, with a useful dynamic range exceeding 100 ng. Evidence is presented indicating that APPI achieves significantly better sensitivity than APCI at flow rates below 200 μL/min, making it a useful source for capillary liquid chromatography and capillary electrophoresis. Results are presented indicating that APPI is less susceptible to ion suppression and salt buffer effects than APCI and electrospray ionization (ESI). The principal benefit of APPI, as compared to other ionization sources, is in efficiently ionizing broad classes of nonpolar compounds. Thus, APPI is an important complement to ESI and APCI by expanding the range and classes of compounds that can be analyzed. In this paper, we also discuss the role of direct APPI vs PI-induced APCI using dopants.
机译:在这项工作中,我们描述了用于采样液体流的大气压光电离(APPI)源的性能。与PI的掺杂机制相比,此处介绍的结果主要集中在直接光电离(PI)的机制上。直接APPI的测量检出限可与大气压化学电离(APCI;例如利血平1 pg)相媲美。离子信号在最大注入量为10 ng时是线性的,有用的动态范围超过100 ng。证据表明,在流速低于200μL/ min的情况下,APPI的灵敏度比APCI显着提高,这使其成为毛细管液相色谱和毛细管电泳的有用来源。结果表明,与APCI和电喷雾电离(ESI)相比,APPI不易受到离子抑制和盐缓冲作用的影响。与其他电离源相比,APPI的主要优势在于可以有效地电离各种类型的非极性化合物。因此,APPI通过扩大可分析化合物的范围和类别,是ESI和APCI的重要补充。在本文中,我们还讨论了直接APPI与PI使用掺杂剂诱导的APCI的作用。

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