首页> 美国卫生研究院文献>Molecules >Nucleophilic Substitution at Tetracoordinate Sulfur. Kinetics and Mechanism of the Chloride-Chloride Exchange Reaction in Arenesulfonyl Chlorides: Counterintuitive Acceleration of Substitution at Sulfonyl Sulfur by ortho-Alkyl Groups and Its Origin
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Nucleophilic Substitution at Tetracoordinate Sulfur. Kinetics and Mechanism of the Chloride-Chloride Exchange Reaction in Arenesulfonyl Chlorides: Counterintuitive Acceleration of Substitution at Sulfonyl Sulfur by ortho-Alkyl Groups and Its Origin

机译:四元硫的亲核取代。芳烃磺酰氯中氯离子-氯离子交换反应的动力学和机理:通过直链烷基取代磺酰硫的直觉加速及其起源

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摘要

The chloride-chloride exchange reaction in arenesulfonyl chlorides was investigated experimentally and theoretically by density functional theory (DFT) calculations. The second order rate constants and activation parameters of this identity reaction were determined for 22 variously substituted arenesulfonyl chlorides using radio-labeled Et N Cl. The chloride exchange rates of 11 sulfonyl chlorides bearing -and -substituents (σ constants from −0.66 to +0.43) in the aromatic ring followed the Hammett equation with a ρ-value of +2.02. The mono- and di- -alkyl substituted sulfonyl chlorides exhibit an enhanced reactivity although both inductive and steric effects lower the reaction rate. The DFT calculations of their structures together with X-ray data showed that an increased reactivity is mainly due to a peculiar, rigid, strongly compressed and sterically congested structure. The DFT studies of the title reaction revealed that it proceeds via a single transition state according to the S 2 mechanism. The analogous fluoride exchange reaction occurs according to the addition–elimination mechanism (A–E) and formation of a difluorosulfurandioxide intermediate. The reliability of the calculations performed was supported by the fact that the calculated relative rate constants and activation parameters correlate well with the experimental kinetic data.
机译:通过密度泛函理论(DFT)计算,从理论和实验上研究了芳烃磺酰氯中的氯离子交换反应。使用放射性标记的Et N Cl确定22种不同取代的芳烃磺酰氯的二阶速率常数和该身份反应的活化参数。芳香环中11个带有-和-取代基(σ常数从-0.66到+0.43)的磺酰氯的氯离子交换率遵循Hammett方程,ρ值为+2.02。单-和二-烷基取代的磺酰氯显示出增强的反应性,尽管诱导和空间效应均降低了反应速率。 DFT结构及其X射线数据的计算表明,反应性的提高主要归因于特殊,刚性,强烈压缩和空间拥挤的结构。标题反应的DFT研究表明,它根据S 2机理通过一个过渡态进行。类似的氟化物交换反应是根据加成-消除机理(A-E)和二氟亚砜二氧化物中间体的形成而发生的。所计算的相对速率常数和激活参数与实验动力学数据具有很好的相关性,从而支持了计算的可靠性。

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