首页> 外文期刊>Bulletin of the Korean Chemical Society >A Kinetic Study on Nucleophilic Substitution Reactions of Phenyl Y-Substituted-Phenyl Carbonates with Z-Substituted-Phenoxides: Effect of Modification of Nonleaving Group from Benzoyl to Phenyloxycarbonyl on Reactivity and Reaction Mechanism
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A Kinetic Study on Nucleophilic Substitution Reactions of Phenyl Y-Substituted-Phenyl Carbonates with Z-Substituted-Phenoxides: Effect of Modification of Nonleaving Group from Benzoyl to Phenyloxycarbonyl on Reactivity and Reaction Mechanism

机译:苯基Y取代的苯基碳酸酯与Z取代的酚盐的亲核取代反应的动力学研究:苯甲酰基到苯氧羰基的非离去基团的修饰对反应性和反应机理的影响

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Second-order rate constants for the reactions of phenyl Y-substituted-phenyl carbonates 5a-g with Zsubstituted- phenoxides (kZ-PhO−) have been measured spectrophotometrically in 80 mol % H2O/20 mol % DMSO at 25.0 ± 0.1 oC. 4-Nitrophenyl phenyl carbonate (5e) is up to 235 times more reactive than 4- nitrophenyl benzoate (4e). The Brønsted-type plot for the reactions of 5e with Z-substituted-phenoxides is linear with βnuc = 0.54, which is typical for reactions reported previously to proceed through a concerted mechanism. Hammett plots correlated with σo and σ– constants for the reactions of 5a-f with 4-chlorophenoxide exhibit highly scattered points. In contrast, the Yukawa-Tsuno plot results in an excellent linear correlation with ρY = 1.51 and r = 0.52, indicating that the leaving-group departure occurs at the rate-determining step (RDS). A stepwise mechanism, in which leaving-group departure occurs at RDS, has been excluded since the incoming 4-ClPhO– is more basic and a poorer nucleofuge than the leaving Y-substituted-phenoxides. Thus, the reaction has been concluded to proceed through a concerted mechanism. Our study has shown that the modification of the nonleaving group from benzoyl to phenyloxycarbonyl causes a change in the reaction mechanism (i.e., from a stepwise mechanism to a concerted pathway) as well as an increase in the reactivity.
机译:已在25.0±0.1 oC下,在80 mol%H2O / 20 mol%DMSO中,用分光光度法测量了苯基Y-取代的碳酸苯酯5a-g与Z取代的苯酚(kZ-PhO-)反应的二级速率常数。 4-硝基苯基碳酸苯酯(5e)的活性比苯甲酸4-硝基苯基酯(4e)高235倍。 5e与Z-取代的酚盐的反应的Brønsted型图与βnuc= 0.54呈线性关系,这对于以前报道的通过协调机制进行的反应而言是典型的。与5a-f与4-氯苯氧化物反应的σo和σ–常数相关的Hammett图显示了高度分散的点。相反,Yukawa-Tsuno图得到了极好的线性相关,其中ρY= 1.51和r = 0.52,这表明离去基团偏离发生在速率决定步骤(RDS)上。由于进入的4-ClPhO-比离开的Y-取代的酚盐更碱性,并且较弱的核反应物,因此已排除了在RDS处发生离去基团离开的逐步机制。因此,已经得出反应是通过协调机制进行的。我们的研究表明,非离去基团从苯甲酰基到苯氧羰基的修饰引起反应机理的改变(即从逐步机理到协同途径)以及反应性的提高。

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