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Compendium of the Reactions of H3O+ With Selected Ketones of Relevance to Breath Analysis Using Proton Transfer Reaction Mass Spectrometry

机译:质子转移反应质谱法分析H 3 O +与选定的与呼吸有关的酮的反应纲要

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摘要

Soft chemical ionization mass spectrometric techniques, such as proton transfer reaction mass spectrometry (PTR-MS), are often used in breath analysis, being particularly powerful for real-time measurements. To ascertain the type and concentration of volatiles in exhaled breath clearly assignable product ions resulting from these volatiles need to be determined. This is difficult for compounds where isomers are common, and one important class of breath volatiles where this occurs are ketones. Here we present a series of extensive measurements on the reactions of H3O+ with a selection of ketones using PTR-MS. Of particular interest is to determine if ketone isomers can be distinguished without the need for pre-separation by manipulating the ion chemistry through changes in the reduced electric field. An additional issue for breath analysis is that the product ion distributions for these breath volatiles are usually determined from direct PTR-MS measurements of the compounds under the normal operating conditions of the instruments. Generally, no account is made for the effects on the ion-molecule reactions by the introduction of humid air samples or increased CO2 concentrations into the drift tubes of these analytical devices resulting from breath. Therefore, another motivation of this study is to determine the effects, if any, on the product ion distributions under the humid conditions associated with breath sampling. However, the ultimate objective for this study is to provide a valuable database of use to other researchers in the field of breath analysis to aid in analysis and quantification of trace amounts of ketones in human breath. Here we present a comprehensive compendium of the product ion distributions as a function of the reduced electric field for the reactions of H3O+. (H2O)n (n = 0 and 1) with nineteen ketones under normal and humid (100% relative humidity for 37 °C) PTR-MS conditions. The ketones selected for inclusion in this compendium are (in order of increasing molecular weight): 2-butanone; 2-pentanone; 3-pentanone; 2-hexanone; 3-hexanone; 2-heptanone; 3-heptanone; 4-heptanone; 3-octanone; 2-nonanone; 3-nonanone; 2-decanone; 3-decanone; cyclohexanone; 3-methyl-2-butanone; 3-methyl-2-pentanone; 2-methyl-3-pentanone; 2-methyl-3-hexanone; and 2-methyl-3-heptanone.
机译:软化学电离质谱技术,例如质子转移反应质谱(PTR-MS),经常用于呼吸分析,对实时测量特别有用。为了确定呼出气中挥发物的类型和浓度,需要确定由这些挥发物产生的可明确分配的产物离子。对于异构体常见的化合物,这很困难,而发生这种情况的一类重要的呼吸挥发物是酮。在这里,我们使用PTR-MS对H3O + 与选择的酮的反应进行了一系列广泛的测量。特别令人感兴趣的是确定酮异构体是否可以通过还原电场的变化控制离子化学而无需预分离而加以区分。呼吸分析的另一个问题是,这些呼吸挥发物的产物离子分布通常是通过在仪器的正常操作条件下直接对化合物进行PTR-MS测量来确定的。通常,没有考虑由于将呼吸空气引入潮湿空气样品或将二氧化碳浓度增加到这些分析设备的漂移管中而对离子分子反应产生影响。因此,这项研究的另一个动机是确定在与呼吸采样相关的潮湿条件下,如果有的话,对产物离子分布的影响。但是,这项研究的最终目的是为呼吸分析领域的其他研究人员提供一个有价值的数据库,以帮助分析和定量人类呼吸中的痕量酮。在这里,我们提出了关于H3O + 反应的产物离子分布与还原电场的函数的综合纲要。 (H2O)n(n = 0和1),在正常和潮湿(37°C下相对湿度为100%)PTR-MS条件下,用十九个酮。选择包含在本汇编中的酮为(按分子量增加的顺序):2-丁酮; 2-戊酮; 3-戊酮; 2-己酮; 3-己酮; 2-庚酮; 3-庚酮; 4-庚酮; 3-辛酮; 2-壬酮; 3-壬酮; 2-癸酮; 3-癸酮;环己酮3-甲基-2-丁酮; 3-甲基-2-戊酮; 2-甲基-3-戊酮; 2-甲基-3-己酮;和2-甲基-3-庚酮。

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