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展示了在甲醇中,一组磷酸单酯、二酯和三酯的相似结构中,Cu(II) 促进的离去基团稳定对断裂的促进作用。

Demonstration of prominent Cu(II)-promoted leaving group stabilization of the cleavage of a homologous set of phosphate mono-, di-, and triesters in methanol.

机构信息

Department of Chemistry, Queen's University, Kingston, Ontario, Canada K7L 3N6.

出版信息

J Am Chem Soc. 2010 Mar 17;132(10):3561-73. doi: 10.1021/ja910111q.

Abstract

A series of phosphate mono-, di-, and triesters with a common leaving group (LG) (2'-(2-phenoxy)-1,10-phenanthroline) was prepared, and the kinetics of decomposition of their Cu(II) complexes was studied in methanol at 25 degrees C under (s)(s)pH-controlled conditions. The Cu(II) complexes of 2-[2'-phenanthrolyl]phenyl phosphate (Cu(II):6), 2-[2'-phenanthrolyl]phenyl methyl phosphate (Cu(II):7), and 2-[2'-phenanthrolyl]phenyl dimethyl phosphate (Cu(II):8) are tightly bound, having dissociation constants Kd < or = 3 x 10(-7) M, with the Cu(II) being in contact with the departing phenoxide. The (s)(s)pH/rate profile for cleavage of Cu(II):6 has a low (s)(s)pH plateau (k(o) = 6.3 x 10(-3) s(-1)), followed by a bell-shaped maximum (kcat(max) = 14.7 +/- 0.4 s(-1)) dependent on two ionizations with (s)(s)pKa(2) and (s)(s)pKa(3) = 7.8 +/- 0.1 and 11.8 +/- 0.2. The (s)(s)pH/rate profile for cleavage of Cu(II):7 has a broad plateau from (s)(s)pH 3 to (s)(s)pH 10 followed by a descending wing at higher (s)(s)pH with a gradient of -2. The (s)(s)pH/rate profile for cleavage of Cu(II):8 is sigmoidal with two plateaus (k1 = (2.0 +/- 0.2) x 10(-5) s(-1), k2 = (1.2 +/- 0.2) x 10(-6) s(-1)), connected by an ionization with a (s)(s)pKa of 6.03. Activation parameters are given for the reactions in the plateau regions: all three species show similar DeltaH(double dagger) terms of 21.4-21.6 kcal/mol, with major differences in the DeltaS(double dagger) terms, which vary from 18 to 2.3 to -7.4 cal/(mol x K) passing from the mono- to di- to triester. Detailed analyses of the kinetics indicate that the reactions involve spontaneous solvent-mediated cleavage of the Cu(II)-coordinated phosphate dianion [Cu(II):6b]0 and phosphate diester monoanion [Cu(II):7b]+ and, for the triester, complexes containing Cu(II) and Cu(II):(-)OCH3 designated as [Cu(II):8a]2+ and [Cu(II):8b]+. Reactions where methoxide is the active nucleophile are not observed. Comparisons of the rates of the decomposition of these species at their (s)(s)pH maxima in the neutral (s)(s)pH region with the estimated rates of the background reactions indicate that leaving group assistance provided by the coordinated Cu(II) accelerates the cleavage of the phosphate mono-, di-, and triesters by 10(14) to 10(15), 10(14), and 10(5). Detailed Hyperquad 2000 analysis of titration data indicates that phenoxide 9- is bound 23 kcal/mol stronger than the phosphate triester 8. It is the realization of part of this energy in the emerging products resulting from P-O(LG) cleavage that provides the driving force for the catalyzed reactions.

摘要

一系列具有共同离去基团 (LG) (2'-(2-苯氧基)-1,10-菲咯啉) 的磷酸单酯、二酯和三酯被制备,并在 25°C 下在甲醇中研究了它们的 Cu(II) 配合物的分解动力学在 pH 控制条件下。2-[2'-菲咯啉]苯基磷酸酯 (Cu(II):6)、2-[2'-菲咯啉]苯基甲基磷酸酯 (Cu(II):7) 和 2-[2'-菲咯啉]苯基二甲基磷酸酯 (Cu(II):8) 的 Cu(II) 配合物紧密结合,具有离解常数 Kd < 或 = 3 x 10(-7) M,Cu(II) 与离去的苯氧基接触。Cu(II):6 的 (s)(s)pH/速率曲线具有低 (s)(s)pH 平台 (k(o) = 6.3 x 10(-3) s(-1)),随后是依赖于两个离解的钟形最大值 (kcat(max) = 14.7 +/- 0.4 s(-1)),具有 (s)(s)pKa(2) 和 (s)(s)pKa(3) = 7.8 +/- 0.1 和 11.8 +/- 0.2。Cu(II):7 的 (s)(s)pH/速率曲线在 (s)(s)pH 3 到 (s)(s)pH 10 之间具有宽平台,随后在较高 (s)(s)pH 下具有下降的翅膀,梯度为 -2。Cu(II):8 的 (s)(s)pH/速率曲线呈 S 形,有两个平台 (k1 = (2.0 +/- 0.2) x 10(-5) s(-1),k2 = (1.2 +/- 0.2) x 10(-6) s(-1)),由 (s)(s)pKa 为 6.03 的离解连接。给出了在平台区域反应的活化参数:所有三种物质都显示出相似的 DeltaH(double dagger)项,为 21.4-21.6 kcal/mol,DeltaS(double dagger)项有很大差异,从 18 到 2.3 到 -7.4 cal/(mol x K),从单酯到二酯再到三酯。对动力学的详细分析表明,反应涉及 Cu(II)配位的磷酸二阴离子 [Cu(II):6b]0 和磷酸二酯单阴离子 [Cu(II):7b]+的自发溶剂介导断裂,并且对于三酯,含有 Cu(II)和 Cu(II):(-)OCH3 的配合物指定为 [Cu(II):8a]2+和 [Cu(II):8b]+。没有观察到甲氧基是活性亲核试剂的反应。在中性 (s)(s)pH 区域中,在其 (s)(s)pH 最大值下分解这些物质的速率与估计的背景反应速率进行比较,表明与配位的 Cu(II) 结合的离去基团辅助通过 10(14)到 10(15)、10(14)和 10(5)加速磷酸单酯、二酯和三酯的断裂。详细的 Hyperquad 2000 滴定数据分析表明,苯氧基 9-与磷酸三酯 8 结合牢固 23 kcal/mol。正是从 P-O(LG) 断裂产生的产物中实现的部分能量,为催化反应提供了驱动力。

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