首页> 外文期刊>Bulletin of the Korean Chemical Society >Kinetic Study on Aminolysis of O-2-Pyridyl Thionobenzoate in Acetonitrile: Effect of Changing Electrophilic Center from C=O to C=S on Reactivity and Reaction Mechanism
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Kinetic Study on Aminolysis of O-2-Pyridyl Thionobenzoate in Acetonitrile: Effect of Changing Electrophilic Center from C=O to C=S on Reactivity and Reaction Mechanism

机译:乙腈中O-2-吡啶基硫代苯甲酸酯氨基分解的动力学研究:亲电中心从C = O改变为C = S对反应活性和反应机理的影响

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摘要

Pseudo-first-order rate constants (k(obsd)) for nucleophilic substitution reaction of O-2-pyridyl thionobenzoate (7) with a series of secondary amines in MeCN at 25.0 +/- 0.1 degrees C have been measured spectrophotometrically. The plots of k(obsd) vs. [amine] curve upward, indicating that the reaction proceeds through a stepwise mechanism with a zwitterionic tetrahedral intermediate (T-+/-), which decomposes to the products through uncatalyzed and catalyzed routes. It has been proposed that the uncatalyzed reaction proceeds through a six-membered cyclic transition state (TS), in which expulsion of the leaving group occurs in the rate-determining step. The catalyzed reaction from T-+/- proceeds through a concerted mechanism with a six-membered cyclic TS rather than via a stepwise pathway with an anionic intermediate T-. This is in contrast to the report that the corresponding reaction of 2-pyridyl benzoate (6, a CO analogue of 7) proceeds through a forced concerted mechanism. Comparison of the second-order rate constants for the uncatalyzed reaction of 7 with those reported previously for the corresponding reaction of 6 has revealed that 7 is much more reactive than 6. Factors that affect the reactivity and reaction mechanism are discussed in detail.
机译:已分光光度法测定了MeCN中O-2-吡啶基硫代苯甲酸酯(7)与一系列仲胺的亲核取代反应的伪一级反应速率常数(k(obsd))。 k(obsd)对[胺]的曲线向上弯曲,表明反应通过两性离子四面体中间体(T-+ /-)的逐步机理进行,该中间体通过未催化和催化的途径分解为产物。已经提出,未催化的反应通过六元环状过渡态(TS)进行,其中在速率确定步骤中发生离去基团的排出。来自T-+ /-的催化反应通过具有六元环TS的协同机理进行,而不是通过带有阴离子中间体T-的逐步途径进行。这与报告2-苯甲酸2-吡啶基酯(6,CO类似物为7)的相应反应通过强制协同机制进行的报道相反。比较未催化反应7的二阶速率常数与先前报道的对应反应6的二阶速率常数,发现7的反应性比6高得多。详细讨论了影响反应性和反应机理的因素。

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