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Catalysis of the ethanolysis of aryl methyl phenyl phosphinate esters by alkali metal ions: transition state structures for uncatalyzed and metal ion-catalyzed reactions

机译:碱金属离子催化芳基甲基苯基次膦酸酯的乙醇化反应:未催化和金属离子催化反应的过渡态结构

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摘要

This paper reports on a spectrophotometric kinetic study of the effects of the alkali metal ions Li+ and K+ on the ethanolysis of the aryl methyl phenyl phosphinate esters 3a-f in anhydrous ethanol at 25 degrees C. Rate data obtained in the absence and presence of complexing agents afford the second-order rate constants for the reaction of free ethoxide (k(EtO-)) and metal ion-ethoxide ion pairs (k(MOEt)). The sequence k(EtO-) < kMOEt is established for all the substrates, contrary to the generally observed reactivity order in nucleophilic substitution processes. The quantities delta G(ip), delta G(ts) and Delta G(cat), which quantify the observed alkali metal ion effect in terms of transition state stabilization through chelation of the metal ion, give the order delta G(ts) > delta G(ip) for Li+ and K+. Hammett plots show significantly better correlation of rates with sigma and sigma(o) substituent constants than with sigma(-), yielding moderately large rho(rho(o)) values that are consistent with a stepwise mechanism in which formation of a pentacoordinate (phosphorane) intermediate is the rate-limiting step. The range of the values of the selectivity parameter, rho(n) (= rho/rho(eq)), 1.3-1.6, obtained for the uncatalyzed and alkali metal ion catalyzed reactions indicates that there is no significant perturbation of the transition state (TS) structure upon chelation of the metal ions. This finding is relevant to the mechanism of enzymatic phosphoryl transfer involving metal ion co-factors. The present results enable one to compare structural effects for nucleophilic reactions of several series of organophosphorus substrates. It is shown that the order of reactivity of the substrates: 4-nitrophenyl dimethyl phosphinate ( 2) > 3a > 4-nitrophenyl diphenyl phosphinate (1) is determined mainly by the steric effects of the alkyl/aryl substituents around the central P atom in the TS of the reaction.
机译:本文报道了分光光度动力学研究,在25℃下,碱金属离子Li +和K +对芳基甲基苯基次膦酸酯3a-f在无水乙醇中乙醇化的影响。在不存在和存在络合条件下获得的速率数据试剂为游离乙醇(k(EtO-))与金属离子-乙醇氧化物对(k(MOEt))的反应提供了二级速率常数。针对所有底物建立了序列k(EtO-) Li +和K +的delta G(ip)。 Hammett图显示,与sigma和sigma(o)取代基常数的速率相关性比与sigma(-)的相关性更好,产生适度的大rho(rho(o))值,这与形成五配位化合物(磷烷)的逐步机理相符)中间是限速步骤。对于未催化和碱金属离子催化反应获得的选择性参数值rho(n)(= rho / rho(eq))的范围为1.3-1.6,表明过渡态无明显扰动( TS)在金属离子螯合后的结构。该发现与涉及金属离子辅因子的酶促磷酸基转移的机理有关。本结果使人们能够比较几种有机磷底物系列亲核反应的结构效果。结果表明,底物的反应顺序为:4-硝基苯基二甲基次膦酸酯(2)> 3a> 4-硝基苯基二苯基次膦酸酯(1)主要取决于中心P原子周围的烷基/芳基取代基的空间效应。反应的TS。

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