Department of Applied Analytical Chemistry, University of Duisburg-Essen, Universitaetsstrasse 5, Essen, 45141, Germany.
Rapid Commun Mass Spectrom. 2021 May 30;35(10):e9071. doi: 10.1002/rcm.9071.
An argon inverse low-temperature plasma (iLTP) ionization source for liquid chromatography/tandem mass spectrometry was developed. The iLTP is constructed from simple chromatographic supply materials and is implemented into an atmospheric pressure chemical ionization (APCI) source replacing the APCI discharge needle electrode. The newly developed ion source was coupled to an ultra-high-performance liquid chromatography (UHPLC) system.
The argon iLTP was characterized by optical emission spectroscopy. The soft ionization of selected standards was also demonstrated by direct infusion experiments. In addition to the use of argon as the discharge gas, helium, synthetic air, and oxygen were used, which were tested for their performance using testosterone and vitamin D .
Spectroscopic measurements of the argon plasma were conducted, demonstrating the main emission band of argon metastables with corresponding energies of 11.53 eV and 11.72 eV. Infusion experiments indicate a gentle ionization by iLTP, e.g. caffeine, testosterone, reserpine, vitamin D , and 25-hydroxyvitamin D , which resulted in the corresponding protonated molecules. The splitless coupling with UHPLC (possible flow rates >1000 μL min ) shows promising results in interday repeatability (n = 10) for the substances with a relative standard deviation of less than 5% and limits of detection for caffeine, testosterone, reserpine, vitamin D , and 25-hydroxyvitamin D of 10 ng L , 50 ng L , 500 ng L , 5 μg L , and 5 μg L , respectively.
The argon iLTP ion source presented in this work shows promising approaches in the field of ionization of small organic molecules. The mechanism related to the discharge gas argon has not been elucidated so far and further investigations are needed. The iLTP ion source shows a very good performance with UHPLC coupling, even at increased flow rates. It could be shown that an argon iLTP can compete with the helium dielectric barrier discharge (DBD) preferred in the literature, making it a more economical choice.
开发了一种用于液相色谱/串联质谱的氩反低温等离子体(iLTP)电离源。该 iLTP 由简单的色谱供应材料构建,并取代大气压化学电离(APCI)放电针电极,集成到 APCI 源中。新开发的离子源与超高效液相色谱(UHPLC)系统耦合。
通过发射光谱对氩 iLTP 进行了表征。通过直接注入实验还证明了选定标准品的软电离。除了使用氩气作为放电气体外,还使用氦气、合成空气和氧气进行了测试,并用睾酮和维生素 D 测试了它们的性能。
对氩等离子体进行了光谱测量,显示了氩亚稳态的主要发射带,相应的能量为 11.53 eV 和 11.72 eV。注入实验表明,iLTP 具有温和的电离作用,例如咖啡因、睾酮、利血平、维生素 D 和 25-羟基维生素 D,从而产生相应的质子化分子。与 UHPLC 的无分流耦合(可能的流速>1000 μL min)在日内重复性方面(n=10)表现出良好的结果,对于咖啡因、睾酮、利血平、维生素 D 和 25-羟基维生素 D 的物质,相对标准偏差小于 5%,检测限分别为 10 ng L、50 ng L、500 ng L、5 μg L 和 5 μg L。
本文介绍的氩 iLTP 离子源在小分子的电离领域显示出了很有前景的方法。与放电气体氩相关的机制尚未阐明,需要进一步研究。iLTP 离子源与 UHPLC 耦合时性能非常好,即使在增加流速时也是如此。结果表明,氩 iLTP 可以与文献中首选的氦介质阻挡放电(DBD)竞争,使其成为更经济的选择。