Miyamoto Kenji, Fujimaki Susumu, Ueda Yoshihisa
Naruto University of Education, 748 Nakashima, Takashima, Naruto-cho, Naruto-shi, Tokushima 772-8502, Japan.
Rapid Commun Mass Spectrom. 2009 Oct 30;23(20):3350-4. doi: 10.1002/rcm.4256.
We have developed a combined EI/FI source for gas chromatography/orthogonal acceleration time-of-flight mass spectrometry (GC/oaTOFMS). In general, EI (electron ionization) and FI (field ionization) mass spectra are complementary: the EI mass spectrum contains information about fragment ions, while the FI mass spectrum contains information about molecular ions. Thus, the comparative study of EI and FI mass spectra is useful for GC/MS analyses. Unlike the conventional ion sources for FI and EI measurements, the newly developed source can be used for both measurements without breaking the ion source vacuum or changing the ion source. Therefore, the combined EI/FI source is more preferable than the conventional EI or FI ion source from the viewpoint of the reliability of measurements and facility of operation. Using the combined EI/FI source, the complementarity between EI and FI mass spectra is demonstrated experimentally with n-hexadecane (100 pg): characteristic fragment ions for the n-alkane such as m/z 43, 57, 71, and 85 are obtained in the EI mass spectrum, while only the parent peak of m/z 226 (M+) without any fragment ions is observed in the FI mass spectrum. Moreover, the field desorption (FD) measurement is also demonstrated with poly(ethylene glycol)s M600 (10 ng) and M1000 (15 ng). Signals of [M+H]+, [M+Na]+ and [M+K]+ are clearly detected in the FD mass spectra.
我们开发了一种用于气相色谱/正交加速飞行时间质谱(GC/oaTOFMS)的电子轰击/场致电离(EI/FI)组合源。一般来说,电子轰击(EI)质谱和场致电离(FI)质谱是互补的:EI质谱包含有关碎片离子的信息,而FI质谱包含有关分子离子的信息。因此,EI和FI质谱的对比研究对GC/MS分析很有用。与用于FI和EI测量的传统离子源不同,新开发的源可用于这两种测量,而无需破坏离子源真空或更换离子源。因此,从测量可靠性和操作便利性的角度来看,EI/FI组合源比传统的EI或FI离子源更具优势。使用EI/FI组合源,通过正十六烷(100 pg)实验证明了EI和FI质谱之间的互补性:在EI质谱中获得了正构烷烃的特征碎片离子,如m/z 43、57、71和85,而在FI质谱中仅观察到m/z 226(M+)的母峰,没有任何碎片离子。此外,还用聚乙二醇M600(10 ng)和M1000(15 ng)进行了场解吸(FD)测量。在FD质谱中清晰地检测到了[M+H]+、[M+Na]+和[M+K]+的信号。