首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Coupling of the liquid sampling-atmospheric pressure glow discharge (LS-APGD) ionization source with a commercial triple-quadrupole mass spectrometer
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Coupling of the liquid sampling-atmospheric pressure glow discharge (LS-APGD) ionization source with a commercial triple-quadrupole mass spectrometer

机译:液体采样 - 大气压辉光放电(LS-APGD)电离源的耦合与商用三弦质谱仪

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摘要

While the LS-APGD microplasma has shown potential as an ionization source for elemental/isotopic/molecular species analysis, up to this point it has been used almost exclusively in conjunction with trapping-type mass analyzers. To this end, the LS-APGD has been coupled to a standard ThermoScientific TSQ Quantum Access MAX triple quadrupole mass spectrometer. This instrument is capable of affecting numerous MS/MS techniques as well as scanning for low mass elements which are not typically permitted in trapping-type MS instruments. The TSQ differs appreciably in how it may be implemented in tandem mass spectrometry versus triple quadrupoles becoming common in ICP-MS. For example, fragmentation methods such as collision-induced dissociation (CID) in Q2 and in-source CID can be affected to reduced background spectral contributions and remediate molecular interferences. With this new coupling, a thorough multi-parametric evaluation was necessary. This evaluation was performed by optimizing the analyte responses and signal-to-background ratios for Rb, Ag, Tl, and U as test elements. With the optimized conditions set, parent ion, product ion, and neutral loss scan methods were explored to observe the types of species being formed by the LS-APGD. While the primary impetus for using the triple quadrupole analyzer was to allow for detailed fundamental studies, LODs for the test elements were determined simultaneously, ranging from 0.99 to 38 ng mL(-1) for 50 mu L injections (i.e., 0.05-2 ng absolute mass).
机译:虽然LS-APGD微血浆已经显示为元素/同位素/分子种类分析的电离源,但到目前为止,它几乎完全与捕获式质量分析仪结合使用。为此,LS-APGD已耦合到标准热敏TSQ量子接入MAX三重四极杆质谱仪。该仪器能够影响许多MS / MS技术以及扫描低质量元件,其通常在捕获式MS仪器中不允许。 TSQ在如何在串联质谱中实现的方式与Triple Quadrupols在ICP-MS中变得常见。例如,可以影响Q2和源CID中的抗碰撞诱导的解离(CID)的碎片方法,从而降低了背景光谱贡献和修复分子干扰。通过这种新耦合,需要彻底的多参数评估。通过优化RB,AG,TL和U作为测试元件的分析物响应和信号 - 背景比来进行该评估。探讨了优化条件,父母离子,产物离子和中性损失扫描方法,以观察LS-APGD形成的物种类型。虽然使用三重四极其分析仪的主要动力是为了允许详细的基本研究,但同时测定试验元素的LOD,从0.99至38ng ml(-1)注射(即0.05-2 ng绝对质量)。

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