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Mechanistic insights into the hydrolysis of 2-chloroethyl ethyl sulfide: The expanded roles of sulfonium salts

机译:机械见解的水解2-氯乙基乙基硫化物:salts盐的扩展作用

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The hydrolysis of 2-chloroethyl ethyl sulfide has been examined in an effort to better understand its mechanism under more concentrated conditions. Two salts formed during hydrolysis were synthesized, and an emphasis was placed on determining their effect on the reaction as it proceeded. Unexpected changes in mechanism were seen when excess chloride was added to the reaction. By measuring rates and product distributions as the products were added back into the hydrolysis, a mechanism was developed. The formation of these sulfonium salts represents additional products in the disappearance of 2-chloroethyl ethyl sulfide with k_3 in particular causing a deviation away from expected first-order behavior. Sulfonium salts 3 and 4 do not appear to interconvert, and the system as a whole had fewer pathways available than previously proposed. Initial conditions for studying the hydrolysis were very important and could lead to different conclusions depending on the conditions used. This work will aid in better understanding the hydrolysis of the very toxic chemical warfare agent mustard (bis(2-chloroethyl)sulfide) in the environment and during its decontamination.
机译:为了更好地理解其在更浓缩条件下的机理,已经研究了2-氯乙基乙基硫化物的水解。合成了在水解过程中形成的两种盐,并着重于确定其对反应进行的影响。当过量的氯化物添加到反应中时,观察到机理的意外变化。通过测量将产物添加回水解中的速率和产物分布,开发了一种机理。这些sulf盐的形成代表另外的产物,即2-氯乙基乙基硫化物以k_3消失,特别是导致偏离预期的一级行为。 salts盐3和4似乎没有相互转换,并且该系统作为一个整体具有比以前提出的更少的途径。研究水解的初始条件非常重要,根据所使用的条件,可能得出不同的结论。这项工作将有助于更好地了解在环境中和去污过程中剧毒芥末(双(2-氯乙基)硫化物)的水解。

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