Morrison Kelsey A, Bythell Benjamin J, Clowers Brian H
Washington State University, Pullman, WA, 99164, USA.
University of Missouri, St. Louis, MO, 63121, USA.
J Am Soc Mass Spectrom. 2019 Jul;30(7):1308-1320. doi: 10.1007/s13361-019-02202-w. Epub 2019 Apr 15.
Within trace vapor analysis in environmental monitoring, defense, and industry, atmospheric flow tube mass spectrometry (AFT-MS) can fill a role that incorporates non-contact vapor analysis with the selectivity and low detection limits of mass spectrometry. AFT-MS has been applied to quantitating certain explosives by selective clustering with nitrate and more recently applied to detecting tributyl phosphate and dimethyl methylphosphonate as protonated species. Developing AFT-MS methods for organophosphorus species is appealing, given that this class of compounds includes a range of pollutants, chemical warfare agent (CWA) simulants, and CWA degradation products. A key aspect of targeting organophosphorus analytes has included the use of dopant ion chemistry to form adducts that impart additional analytical selectivity. The assessment of potential dopant molecules suited to enhance detection of these compounds is hindered by few published ion thermochemical properties for organophosphorus species, such as proton affinity, which can be used for approximating proton-bound dimer bond strength. As a preliminary investigation for the progression of sensing methods involving AFT-MS, we have applied both the extended kinetic method and computational approaches to eight organophosphorus CWA simulants to determine their respective gas-phase proton affinities. Notable observed trends, supported by computational efforts, include an increase in proton affinity as the alkyl chain lengths on the phosphonates increased. Graphical Abstract .
在环境监测、国防和工业中的痕量蒸汽分析领域,大气流动管质谱法(AFT-MS)可发挥一种作用,即将非接触式蒸汽分析与质谱的选择性和低检测限相结合。AFT-MS已被用于通过与硝酸盐进行选择性聚类来定量某些爆炸物,并且最近还被用于检测作为质子化物种的磷酸三丁酯和甲基膦酸二甲酯。鉴于这类化合物包括一系列污染物、化学战剂(CWA)模拟物和CWA降解产物,开发用于有机磷物种的AFT-MS方法很有吸引力。针对有机磷分析物的一个关键方面包括使用掺杂剂离子化学来形成加合物,从而赋予额外的分析选择性。由于关于有机磷物种的离子热化学性质(如质子亲和力,可用于近似质子结合二聚体键强度)的公开报道很少,因此对适合增强这些化合物检测的潜在掺杂剂分子的评估受到阻碍。作为对涉及AFT-MS的传感方法进展的初步研究,我们已将扩展动力学方法和计算方法应用于八种有机磷CWA模拟物,以确定它们各自的气相质子亲和力。计算结果支持的显著观察趋势包括,随着膦酸酯上烷基链长度的增加,质子亲和力增加。图形摘要 。