有机质谱中单电荷偶电子碎片离子的结构和m/z:“质量位移规则”重访(二次出版)。

Q3 Physics and Astronomy
Mass spectrometry Pub Date : 2019-01-01 Epub Date: 2019-11-25 DOI:10.5702/massspectrometry.A0074
Hisao Nakata
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引用次数: 0

摘要

简要总结了质谱分析中有机化合物键裂解的典型模式。尽管这些碎片规则对于解释简单化合物的质谱非常有用,但将其应用于含有多个杂原子的结构复杂分子(如氮或氧)变得越来越困难,因为在前体离子中未配对电子或正电荷或负电荷的确切位置变得模糊。大约十年前,我们提出了“质量转移规则”,它正确地预测了观测到的与单电荷偶数电子碎片离子相对应的峰的m/z。该规则的基础假设在普通质谱中作为峰观察到的离子在质谱仪的飞行路径中应该足够稳定。重要的认识是,稳定离子中的每个原子都应该处于常价态,不允许有自由价。因此,如果一个键的断裂导致一个具有不稳定结构的离子,为了在质谱中观察到离子,必须发生一些结构变化。这种结构变化可以是在正离子中添加氢原子和/或质子,在负离子中添加氢原子和/或消除两个氢原子。在每种情况下,这些需要的结构变化都被图解地描述和详细讨论。给出了两个典型的例子,其中正确地预测了观测峰的m/z。本文还讨论了该规则在有机质谱分析中的适用范围和局限性,以及该规则的意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Structure and <i>m</i>/<i>z</i> of Singly Charged Even-Electron Fragment Ions in Organic Mass Spectrometry: "A Rule of Mass Shift" Revisited (Secondary Publication).

Structure and <i>m</i>/<i>z</i> of Singly Charged Even-Electron Fragment Ions in Organic Mass Spectrometry: "A Rule of Mass Shift" Revisited (Secondary Publication).

Structure and <i>m</i>/<i>z</i> of Singly Charged Even-Electron Fragment Ions in Organic Mass Spectrometry: "A Rule of Mass Shift" Revisited (Secondary Publication).

Structure and m/z of Singly Charged Even-Electron Fragment Ions in Organic Mass Spectrometry: "A Rule of Mass Shift" Revisited (Secondary Publication).

Typical modes of bond cleavages of organic compounds in mass spectrometry are briefly summarized. Although these fragmentation rules can be quite useful for interpreting mass spectra of simple compounds, application to structurally complex molecules that contain multiple hetero atoms such as nitrogen or oxygen becomes increasingly difficult, because the exact location of an unpaired electron or positive or negative charges becomes obscure in precursor ions. About a decade ago, we proposed "a rule of mass shift," which correctly predicts the m/z for observed peaks corresponding to singly charged even-electron fragment ions. The basis of the rule postulates that ions observed as peaks in an ordinary mass spectrum should be sufficiently stable to survive during the flight path in a mass spectrometer. The important recognition is that each atom in a stable ion should be in an ordinary valence state, and no free valence should be allowed. Therefore, if the cleavage of a bond leads to an ion with an unstable structure, some structural changes must take place in order for the ion to be observed in the mass spectrum. Such structural changes can be the addition of hydrogen atom(s) and/or a proton for positive ions, and the addition of a hydrogen atom and/or the elimination of two hydrogen atoms in the case of negative ions. These required structural changes in each case are schematically depicted and discussed in detail. Two typical examples are shown, in which m/z's of the observed peaks are correctly predicted. The scope and limitations, as well as the significance of the rule for analyzing fragmentations in organic mass spectrometry are also discussed.

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来源期刊
Mass spectrometry
Mass spectrometry Physics and Astronomy-Instrumentation
CiteScore
1.90
自引率
0.00%
发文量
3
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