首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Kinetics of Ion-Molecule Reactions with 2-Chloroethyl Ethyl Sulfide at 298 K: A Search for CIMS Schemes for Mustard Gas
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Kinetics of Ion-Molecule Reactions with 2-Chloroethyl Ethyl Sulfide at 298 K: A Search for CIMS Schemes for Mustard Gas

机译:298 K下2-氯乙基乙基硫醚与离子分子反应的动力学:芥子气的CIMS方案搜索

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The rate constants and product ion branching ratios have been measured in a selected ion flow tube (SIFT) at 298 K for a variety of positive and negative ions reacting with 2-chloroethyl ethyl sulfide (2-CEES), a surrogate for mustard gas (HD). This series of experiments is designed to elucidate ion-molecule reactions that have large rate constants and produce unique product ions to guide the development of chemical ionization mass spectrometry (CIMS) detection methods for the chemical weapon agent using the surrogate instead. The negative ions typically used in CIMS instruments are essentially unreactive with 2-CEES, that is, SF6-, SF4-, CF3O-, and CO3-. A few negative ions such as NO2- and NO3- undergo three-body association to give a unique product ion, but the bimolecular rate constants are small in the SIFT. Positive ions typically react at the collisional limit, primarily by charge and proton transfer, some of which is dissociative. For ions with high proton binding energies, association with 2-CEES has also been observed. Many of these reactions produced ions with the 2-CEES intact, including the parent cation, the protonated cation, and clusters. G3(MP2) calculations of the thermochemical properties for 2-CEES and mustard have been performed, along with calculations of the structures for the observed product cations. Reacting a series of protonated neutral molecules with 2-CEES brackets the proton affinity (PA) to between 812 ((CH3)(2)CO) and 854 (NH3) kJ mol(-1). G3(MP2) calculations give a PA for 2-CEES of 823 kJ mol(-1) and a PA for mustard of 796 kJ mol(-1), indicating that the present results for 2-CEES should be directly transferable to mustard to design a CIMS detection scheme.
机译:速率常数和产物离子支化比已在选定的离子流管(SIFT)中于298 K进行了测量,用于各种正离子和负离子与2-氯乙基乙基硫醚(2-CEES)反应(芥子气的替代物)(高清)。该系列实验旨在阐明具有大速率常数的离子分子反应,并产生独特的产物离子,从而指导使用替代品替代化学武器剂的化学电离质谱(CIMS)检测方法的发展。通常在CIMS仪器中使用的负离子与2-CEES,即SF6-,SF4-,CF3O-和CO3-基本不反应。一些负离子(例如NO2-和NO3-)经过三体缔合产生唯一的产物离子,但是SIFT中的双分子速率常数很小。正离子通常在碰撞极限时发生反应,主要是通过电荷和质子转移,其中一些是离解性的。对于具有高质子结合能的离子,还观察到了与2-CEES的缔合。这些反应中的许多反应都产生了具有2-CEES完整的离子,包括母体阳离子,质子化阳离子和簇。已对2-CEES和芥末的热化学性质进行了G3(MP2)计算,并为观察到的产物阳离子计算了结构。与2-CEES反应的一系列质子化的中性分子将质子亲和力(PA)置于812((CH3)(2)CO)和854(NH3)kJ mol(-1)之间。 G3(MP2)计算得出2-CEES的PA为823 kJ mol(-1),芥菜的PA为796 kJ mol(-1),这表明2-CEES的当前结果应可直接转移至芥末。设计一个CIMS检测方案。

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