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洗脱液组成对气动辅助电喷雾、大气压化学电离和超声喷雾中吗啡电离效率的影响。

Influence of the eluent composition on the ionization efficiency for morphine of pneumatically assisted electrospray, atmospheric-pressure chemical ionization and sonic spray.

作者信息

Dams Riet, Benijts Tom, Günther Wolfgang, Lambert Willy, De Leenheer André

机构信息

Laboratorium voor Toxicologie, Universiteit Gent, Harelbekestraat 72, B-9000 Gent, Belgium.

出版信息

Rapid Commun Mass Spectrom. 2002;16(11):1072-7. doi: 10.1002/rcm.683.

Abstract

A comparative study of three atmospheric-pressure ionization (API) sources for liquid chromatography/mass spectrometry (LC/MS), namely pneumatically assisted electrospray or ionspray (IS), atmospheric-pressure chemical ionization (APCI), and sonic spray (SS), with respect to the influence of the eluent composition on the ionization of morphine, is presented. The effect of organic modifiers, volatile acids, and buffer systems (with and without pH adjustment) in the LC mobile phase on the ionization efficiency of each interface is described. We conclude that for all three ion sources, the composition of the liquid phase had a serious impact on the ionization of the target compound. For IS and SS, very similar behavior towards the LC eluent was observed. In both cases, an increase in organic modifier resulted in an increase in ionization, while an increasing amount of volatile acid or buffer caused signal suppression. APCI, on the other hand, proved to respond completely differently towards the changes in the eluent. Again, an increased ionization was observed with an increase in organic modifier content but this time also in the presence of mobile phase additives like acids or buffers. Finally, we concluded that APCI proved to be the preferred ion source for the test compound because of its robust character and its direct applicability in traditional LC analysis.

摘要

本文介绍了液相色谱/质谱联用(LC/MS)的三种大气压电离(API)源,即气动辅助电喷雾或离子喷雾(IS)、大气压化学电离(APCI)和超声喷雾(SS),关于洗脱液组成对吗啡电离影响的比较研究。描述了LC流动相中有机改性剂、挥发性酸和缓冲系统(有无pH调节)对各接口电离效率的影响。我们得出结论,对于所有三种离子源,液相组成对目标化合物的电离有严重影响。对于IS和SS,观察到它们对LC洗脱液的行为非常相似。在这两种情况下,有机改性剂的增加导致电离增加,而挥发性酸或缓冲剂的量增加导致信号抑制。另一方面,APCI对洗脱液变化的响应完全不同。同样,随着有机改性剂含量的增加,观察到电离增加,但这次是在存在酸或缓冲剂等流动相添加剂的情况下。最后,我们得出结论,由于其稳健的特性以及在传统LC分析中的直接适用性,APCI被证明是测试化合物的首选离子源。

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