Air Force Research Laboratory, Space Vehicles Directorate, 29 Randolph Rd., Hanscom AFB, Massachusetts 01731-3010, USA.
Anal Chem. 2010 May 1;82(9):3764-71. doi: 10.1021/ac100176r.
Room temperature rate constants and product ion branching ratios have been measured for the reactions of numerous positive and negative ions with VX chemical warfare agent surrogates representing the amine (triethylamine) and organophosphonate (diethyl methythiomethylphosphonate (DEMTMP)) portions of VX. The measurements have been supplemented by theoretical calculations of the proton affinity, fluoride affinity, and ionization potential of VX and the simulants. The results show that many proton transfer reactions are rapid and that the proton affinity of VX is near the top of the scale. Many proton transfer agents should detect VX selectively and sensitively in chemical ionization mass spectrometers. Charge transfer with NO(+) should also be sensitive and selective since the ionization potential of VX is small. The surrogate studies confirm these trends. Limits of detection for commercial and research grade CIMS instruments are estimated at 80 pptv and 5 ppqv, respectively.
室温速率常数和产物离子分支比已被测量,用于代表 VX 化学战剂的胺(三乙胺)和膦酸酯(二乙基甲基硫代甲基膦酸酯(DEMTMP))部分的各种正离子和负离子与 VX 模拟物的反应。这些测量结果通过对 VX 和模拟物的质子亲和力、氟离子亲和力和电离势的理论计算得到了补充。结果表明,许多质子转移反应是快速的,而且 VX 的质子亲和力接近该尺度的顶端。许多质子转移试剂应该在化学电离质谱仪中对 VX 进行选择性和灵敏的检测。与 NO(+)的电荷转移也应该是敏感和选择性的,因为 VX 的电离势很小。替代物研究证实了这些趋势。商业和研究级 CIMS 仪器的检测限估计分别为 80 pptv 和 5 ppqv。