首页> 外文期刊>Bulletin of the Chemical Society of Japan >A Kinetic Study on Nucleophilic Displacement Reactions of Phenyl Y-Substituted-Phenyl Carbonates with Alkali Metal Ethoxides: Metal Ion Effect and Reaction Mechanism
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A Kinetic Study on Nucleophilic Displacement Reactions of Phenyl Y-Substituted-Phenyl Carbonates with Alkali Metal Ethoxides: Metal Ion Effect and Reaction Mechanism

机译:碱金属乙氧酸苯基Y-取代 - 苯基碳酸酯的亲核置换反应的动力学研究:金属离子效应和反应机制

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Pseudo-first-order rate constants (k(obsd)) have been measured for reactions of phenyl Y-substituted-phenyl carbonates with alkali metal ethoxides (EtOM, M = Li, Na, and K). The plot of k(obsd) vs. [EtOM] curves upward for the reaction of diphenyl carbonate with EtOM but is linear for that with EtOK in the presence of 18-crown-6-ether (18C6), indicating that the reaction is catalyzed by M+ ions and the catalytic effect disappears in the presence of 18C6. The k(obsd) values for and k(EtOK), the reactions with EtOK have been dissected into k(EtO)(-) i.e., the second-order rate constants for the reactions with dissociated EtO- and ion-paired EtOK, respectively. The Hammett plots correlated with sigma(-) and sigma degrees constants exhibit highly scattered points, while the Yukawa-Tsuno plots result in an excellent linear correlation with rho = 2.11 and r = 0.21 for k(EtO)(-), and rho = 1.62 and r = 0.26 for k(EtOK), implying that the reaction proceeds through a concerted mechanism. The catalytic effect (i.e., the k(EtOK)/k(EtO)(-) ratio) is independent of the electronic nature of the substituent Y. Thus, it has been concluded that K+ ion catalyzes the reaction by increasing the electrophilicity of the reaction center.
机译:已经测量了伪一阶速率常数(K(obsd))已经测量苯基Y-取代 - 苯基碳酸盐与碱金属乙醇酯(ETOM,M = Li,Na和K)的反应。 k(obsd)与β的曲线图向上向上向上向上弯曲碳酸二苯基碳酸酯与η的反应,但在18-冠状-6-醚(18c6)存在下用Etok线性,表明反应催化通过M +离子,并且催化效果在18C6存在下消失。 k(obsd)值为K(eK),将与EtOK的反应分解为K(EtO)( - ),即二阶率常数,即与解离的Eto-和离子配对Etok的反应。与Sigma( - )和Sigma度常数相关的哈马特曲线表现出高度散射的点,而yukawa-tsuno曲线图导致与rho = 2.11和r = 0.21的k(eto)( - )和rho =的r = 0.21产生优异的线性相关性。 k(ek)的1.62和r = 0.26,暗示反应通过一致的机制进行。催化作用(即K(eK)/ K(EtO)(EtO)( - )比例与取代基Y的电子性质无关。因此,已经得出结论,K +离子通过增加含量的亲电性来催化反应反应中心。

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