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农药电喷雾质谱中的偶电子规则。

The even-electron rule in electrospray mass spectra of pesticides.

作者信息

Thurman E Michael, Ferrer Imma, Pozo Oscar J, Sancho Juan V, Hernandez Felix

机构信息

University of Almeria, Department of Analytical Chemistry, Almeria, Spain.

出版信息

Rapid Commun Mass Spectrom. 2007;21(23):3855-68. doi: 10.1002/rcm.3271.

Abstract

A study of the fragmentation and ion formation of three major families of pesticides (including herbicides, insecticides, and fungicides) by liquid chromatography/time-of-flight mass spectrometry (LC/TOF-MS) and liquid chromatography/quadrupole time-of-flight mass spectrometry (LC/Q-TOF-MS) was carried out using positive electrospray ionization (ESI) and the results compared with those by gas chromatography (GC)/TOF-MS with electron ionization (EI) in order to test the validity of the even-electron rule in electrospray ionization. First, the majority of the fragmentations by positive ion ESI were even electron (EE) ions (93% of the fragment ions). Secondly, the formation of odd-electron (OE) fragment ions was greater with EI, where the fragment ions were present in a ratio of approximately 1:2 (35% OE ions and 65% EE ions). Thirdly, in-source collision-induced dissociation (CID) fragmentation by LC/TOF-MS and CID fragmentation in the collision cell by LC/Q-TOF-MS/MS resulted in 95% of the fragment ions being identical between the two types of fragmentation. As ESI in the positive ion mode yields an EE precursor ion (normally a protonated molecule), this commonly leads to EE fragment ions by elimination of molecules - a process called the even-electron rule. Neutral radical losses were less common in ESI but were common in the EI spectra of the same compounds. The structures that did lead to OE ions in ESI (exceptions to the even-electron rule approximately 7% of all ESI ions) favored electronegative radical losses in approximately the following order: .SO(2)CH(3), .NO(2), .CH(3), .Cl, .SCH(3), .CH(2)CH, and .OH.

摘要

利用正电喷雾电离(ESI),通过液相色谱/飞行时间质谱(LC/TOF-MS)和液相色谱/四极杆飞行时间质谱(LC/Q-TOF-MS)对三大类农药(包括除草剂、杀虫剂和杀菌剂)的碎片化和离子形成进行了研究,并将结果与采用电子电离(EI)的气相色谱(GC)/TOF-MS的结果进行比较,以检验电喷雾电离中偶电子规则的有效性。首先,正离子ESI产生的大多数碎片化产物是偶电子(EE)离子(占碎片离子的93%)。其次,EI产生的奇电子(OE)碎片离子更多,其中碎片离子的比例约为1:2(35%为OE离子,65%为EE离子)。第三,LC/TOF-MS的源内碰撞诱导解离(CID)碎片化和LC/Q-TOF-MS/MS碰撞池中的CID碎片化导致两种类型碎片化产生的95%的碎片离子相同。由于正离子模式下的ESI产生一个EE前体离子(通常是一个质子化分子),这通常通过消除分子导致EE碎片离子——这一过程称为偶电子规则。中性自由基损失在ESI中不太常见,但在相同化合物的EI光谱中很常见。在ESI中确实导致OE离子的结构(偶电子规则的例外情况,约占所有ESI离子的7%)倾向于按以下大致顺序损失电负性自由基:.SO(2)CH(3)、.NO(2)、.CH(3)、.Cl、.SCH(3)、.CH(2)CH和.OH。

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