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Isotopic labelling in mass spectrometry as a tool for studying reaction mechanisms of ion dissociations

机译:质谱中的同位素标记作为研究离子解离反应机理的工具

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Perhaps the greatest influence that isotopic labelling experiments have had on organic mass spectrometry is that reaction mechanisms originally borrowed from the chemistry of neutral counterparts have proved to be inadequate for explaining the results. It was therefore necessary to devise completely new types of fragmentation mechanisms and unconventional structures for organic gas-phase cations. In most cases the labelling technique allows one to discover the positions at which the label atoms are found in both the charged and neutral products of an ion's dissociation. These experimental results are often difficult to rationalize by any simple mechanism, but they nearly always indicate how chemical computations should be directed in order for the latter to be able to provide a better mechanistic understanding. This short article describes some significant studies involving D and 18-O labelling that well support the above assertions, using as examples the behaviour of some quite simple organic molecules.
机译:同位素标记实验对有机质谱的最大影响也许是,最初从中性对应物的化学中借用的反应机理已被证明不足以解释结果。因此,有必要为有机气相阳离子设计出全新的裂解机理和非常规结构。在大多数情况下,标记技术使人们可以发现在离子解离的带电和中性产物中都存在标记原子的位置。这些实验结果通常很难通过任何简单的机制进行合理化,但是它们几乎总是表明如何指导化学计算,以便后者能够提供更好的机械理解。这篇简短的文章以一些非常简单的有机分子的行为为例,描述了一些涉及D和18-O标记的重要研究,这些研究很好地支持了以上观点。

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