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首页> 外文期刊>Analytical and bioanalytical chemistry >Understanding molecular formula assignment of Fourier transform ion cyclotron resonance mass spectrometry data of natural organic matter from a chemical point of view
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Understanding molecular formula assignment of Fourier transform ion cyclotron resonance mass spectrometry data of natural organic matter from a chemical point of view

机译:从化学角度理解天然有机物的傅立叶变换离子回旋共振质谱数据的分子式分配

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摘要

Formula assignment is one of the key challenges in evaluation of dissolved organic matter analyses using ultra-high resolution mass spectrometry (FTICR MS). The number of possible solutions for elemental formulas grows exponentially with increasing nominal mass, especially when non-oxygen heteroatoms like N, S or P are considered. Until now, no definitive solution for finding the correct elemental formula has been given. For that reason an approach from the viewpoint of chemical feasibility was elucidated. To illustrate the new chemical formula assignment principle, a literature data set was used and evaluated by simplified chemical constraints. Only formulas containing a maximum of one sulphur and five nitrogen atoms were selected for further data processing. The resulting data table was then divided into mass peaks with unique component solutions (singlets, representing unequivocal formula assignments) and those with two or more solutions (multiple formula assignments, representing equivocal formula assignments). Based on a [double bond equivalent (DBE) versus the number of oxygen atoms (o)] frequency contour plot and a frequency versus [DBE minus o] diagram, a new assessment and decision strategy was developed to differentiate multiple formula assignments into chemically reliable and less reliable molecular formulas. Using this approach a considerable number of reliable components were identified within the equivocal part of the data set. As a control, a considerable proportion of the assigned formulas deemed to be reliable correspond to those which would have been obtained by CH2-based Kendrick mass defect analysis. We conclude that formula assignment in complex mixtures can be improved by group-wise decisions based on the frequency and the [DBE minus o] values of multiple formula assignments.
机译:配方分配是使用超高分辨率质谱(FTICR MS)评估溶解有机物分析的关键挑战之一。元素式可能的解决方案数量随着标称质量的增加而呈指数增长,尤其是在考虑到非氧杂原子(如N,S或P)时。到目前为止,还没有给出找到正确元素公式的确定解决方案。因此,从化学可行性的观点出发,阐明了一种方法。为了说明新的化学式分配原则,使用了文献数据集并通过简化的化学约束条件对其进行了评估。仅选择最多包含一个硫和五个氮原子的分子式进行进一步的数据处理。然后将得到的数据表分为具有唯一组分解决方案的质量峰(单峰,表示明确的配方分配)和具有两种或多种解决方案的质量峰(多个配方的分配,表示模棱两可的配方分配)。根据[双键当量(DBE)对氧原子数(o)的关系]频率等高线图和频率对[DBE负o]的关系图,开发了一种新的评估和决策策略,以将多种配方分配区分为化学上可靠的和不太可靠的分子式。使用这种方法,在数据集的模棱两可的部分中确定了相当数量的可靠组件。作为对照,相当一部分分配的公式被认为是可靠的,它们对应于通过基于CH2的Kendrick质量缺陷分析所获得的公式。我们得出结论,基于多个公式分配的频率和[DBE减去o]值,可以通过基于组的决策来改善复杂混合物中的公式分配。

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