首页> 外文期刊>Bulletin of the Korean Chemical Society >SNAr Reactions of 1-Halo-2,4-dinitrobenzenes with Alkali-Metal Ethoxides: Differential Stabilization of Ground State and Transition State Determines Alkali-Metal Ion Catalysis or Inhibition
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SNAr Reactions of 1-Halo-2,4-dinitrobenzenes with Alkali-Metal Ethoxides: Differential Stabilization of Ground State and Transition State Determines Alkali-Metal Ion Catalysis or Inhibition

机译:1-卤代2,4-二硝基苯与碱金属乙醇化物的SNAr反应:基态和过渡态的微分稳定决定了碱金属离子的催化或抑制

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摘要

A kinetic study on SNAr reactions of 1-halo-2,4-dinitrobenzenes (6a-6d) with alkali-metal ethoxides (EtOM; M = Li, Na, K and 18-crown-6-ether-complexed K) is reported. The plots of pseudo-first-order rate constant (k(obsd)) vs. [EtOM] curve upward or downward depending on the size of M+ ions. The reactions are catalyzed or inhibited by the M+ ions, e.g., the large K+ ion complexed by 18-crown-6-ether (18C6) acts as a catalyst while the small Li+ and Na+ ions behave as an inhibitor. Reactivity of 6a-6d toward EtOM decreases linearly as the halide ion becomes less basic regardless of the size of M+ ions, indicating that expulsion of the leaving group occurs after the rate-determining step (RDS). Thus, the reactions have been proposed to proceed through a stepwise mechanism with formation of a Meisenheimer complex being the RDS. Computational studies using B3LYP density functional theory have revealed that Mulliken charge density of the electrophilic center decreases as the halogen atom becomes less electronegative. Thus, it has been concluded that the SNAr reactivity of 6a-6d toward EtOM is governed by electrophilicity of the reaction center but not by nucleofugality of the leaving group. A pi-complexed transition-state structure has been proposed to account for the experimental and computational results.
机译:报道了1-卤-2,4-二硝基苯(6a-6d)与碱金属乙醇化物(EtOM; M = Li,Na,K和18冠6醚络合的K)的SNAr反应的动力学研究。 。伪一阶速率常数(k(obsd))对[EtOM]的曲线根据M +离子的大小向上或向下弯曲。该反应被M +离子催化或抑制,例如,由18-冠-6-醚(18C6)络合的大K +离子充当催化剂,而小Li +和Na +离子充当抑制剂。 6a-6d对EtOM的反应性随卤离子变得更弱碱性而与M +离子大小​​无关,而呈线性降低,表明在速率确定步骤(RDS)之后发生了离去基团的驱除。因此,已经提出通过逐步机理进行反应,形成迈森海默络合物为RDS。使用B3LYP密度泛函理论的计算研究表明,随着卤素原子的负电性降低,亲电子中心的Mulliken电荷密度降低。因此,已经得出结论,6a-6d对EtOM的SNAr反应性是由反应中心的亲电性决定的,而不是由离去基团的核键性决定的。已经提出了π-复杂的过渡态结构来考虑实验和计算结果。

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