Kauppila Tiina J, Kotiaho Tapio, Kostiainen Risto, Bruins Andries P
Viikki Drug Discovery Technology Center, Department of Pharmacy, University of Helsinki, Helsinki, Finland.
J Am Soc Mass Spectrom. 2004 Feb;15(2):203-11. doi: 10.1016/j.jasms.2003.10.012.
The ionization mechanism in the novel atmospheric pressure photoionization mass spectrometry (APPI-MS) in negative ion mode was studied thoroughly by the analysis of seven compounds in 17 solvent systems. The compounds possessed either gas-phase acidity or positive electron affinity, whereas the solvent systems had different polarities and gas-phase acidities and some of them positive electron affinities. The analytes that possessed gas-phase acidity formed deprotonated ions in proton transfer; in addition, fragments and solvent adducts were observed. The compounds of positive electron affinity formed negative molecular ions by electron capture or charge exchange and substitution products of form M - X + O by substitution reactions. The efficiency of deprotonation was decreased if the solvent used possessed higher gas-phase acidity than the analyte. Solvents of positive electron affinity captured thermal electrons and deteriorated the ionization of all the analytes. Also, the proportion of substitution products was affected by the solvent. Finally, the performances of negative ion APPI and negative ion APCI were compared. The sensitivity for the studied compounds was better in APPI, but the formation of substitution products was lower in APCI.
通过对17种溶剂体系中的7种化合物进行分析,深入研究了新型大气压光电离质谱(APPI-MS)负离子模式下的电离机制。这些化合物具有气相酸度或正电子亲和力,而溶剂体系具有不同的极性和气相酸度,其中一些还具有正电子亲和力。具有气相酸度的分析物在质子转移过程中形成去质子化离子;此外,还观察到了碎片和溶剂加合物。具有正电子亲和力的化合物通过电子捕获或电荷交换形成负离子分子,并通过取代反应形成M - X + O形式的取代产物。如果所用溶剂的气相酸度高于分析物,则去质子化效率会降低。具有正电子亲和力的溶剂会捕获热电子,从而降低所有分析物的电离效率。此外,取代产物的比例也受溶剂影响。最后,比较了负离子APPI和负离子APCI的性能。对于所研究的化合物,APPI的灵敏度更高,但APCI中取代产物的形成较少。