首页> 外文期刊>The Journal of Organic Chemistry >Ion-molecule reactions of O,S-dimethyl methylphosphonothioate: Evidence for intramolecular sulfur oxidation during VX perhydrolysis
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Ion-molecule reactions of O,S-dimethyl methylphosphonothioate: Evidence for intramolecular sulfur oxidation during VX perhydrolysis

机译:O,S-二甲基甲基硫代磷酸酯的离子分子反应:VX过水解过程中分子内硫氧化的证据

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(Chemical Equation Presented) The alkaline perhydrolysis of the nerve agent O-ethyl S-[2-(diisopropylamino)ethyl] methylphosphonothioate (VX) was investigated by studying the ion-molecule reactions of HOO- with O,S-dimethyl methylphosphonothioate in a modified linear ion-trap mass spectrometer. In addition to simple proton transfer, two other abundant product ions are observed at m/z 125 and 109 corresponding to the S-methyl methylphosphonothioate and methyl methylphosphonate anions, respectively. The structure of these product ions is demonstrated by a combination of collision-induced dissociation and isotope-labeling experiments that also provide evidence for their formation by nucleophilic reaction pathways, namely, (i) S_N2 at carbon to yield the S-methyl methylphosphonothioate anion and (ii) nucleophilic addition at phosphorus affording a reactive pentavalent intermediate that readily undergoes internal sulfur oxidation and concomitant elimination of CH_3SOH to yield the methyl methylphosphonate anion. Consistent with previous solution phase observations of VX perhydrolysis, the toxic P-O cleavage product is not observed in this VX model system and theoretical calculations identify P-O cleavage to be energetically uncompetitive. Conversely, intramolecular sulfur oxidation is calculated to be extremely exothermic and kinetically accessible explaining its competitiveness with the facile gas phase proton transfer process. Elimination of a sulfur moiety deactivates the nerve agent VX and thus the intramolecular sulfur oxidation process reported here is also able to explain the selective perhydrolysis of the nerve agent to relatively nontoxic products.
机译:(提出的化学方程式)通过研究HOO-与O,S-二甲基甲基硫代磷酸酯的离子分子反应,研究了神经毒剂O-乙基S- [2-(二异丙基氨基)乙基]甲基硫代磷酸酯(VX)的碱性过水解反应。改进的线性离子阱质谱仪。除了简单的质子转移外,在m / z 125和109处还观察到另外两个丰富的产物离子,分别对应于S-甲基甲基膦硫酸根阴离子和甲基甲基膦酸根阴离子。这些产物离子的结构通过碰撞诱导的解离和同位素标记实验的结合得到证明,这些实验还通过亲核反应途径为它们的形成提供了证据,即(i)碳原子上的S_N2产生S-甲基甲基硫代磷酸根阴离子和(ii)在磷处的亲核加成,得到反应性的五价中间体,该中间体容易进行内部硫氧化并伴随消除CH 3 SOH以产生甲基膦酸甲酯阴离子。与以前对VX水解的溶液相观察一致,在该VX模型系统中未观察到有毒的P-O裂解产物,并且理论计算确定P-O裂解在能量上不具有竞争力。相反,分子内硫的氧化被认为是极度放热的,并且在动力学上是可及的,这说明了其在简便的气相质子转移过程中的竞争力。消除硫部分使神经毒剂VX失活,因此,本文报道的分子内硫氧化过程也能够解释神经毒剂选择性过水解为相对无毒的产物。

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