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配体对锌(II)配合物与磷酸二酯水解反应活性的影响。

The ligand effect on the hydrolytic reactivity of Zn(II) complexes toward phosphate diesters.

作者信息

Bonfá Lodovico, Gatos Maddalena, Mancin Fabrizio, Tecilla Paolo, Tonellato Umberto

机构信息

Dipartimento di Chimica Organica and Istituto CNR di Tecnologia delle Membrane-Sezione di Padova, Università di Padova, Via Marzolo 1, I-35131, Padova, Italy.

出版信息

Inorg Chem. 2003 Jun 16;42(12):3943-9. doi: 10.1021/ic034139x.

Abstract

The catalytic effects of the Zn(II) complexes of a series of poliaminic ligands in the hydrolysis of the activated phosphodiesters bis-p-nitrophenyl phosphate (BNP) and 2-hydroxypropyl-p-nitrophenyl phosphate (HPNP) have been investigated. The reactions show first-order rate dependency on both substrate and metal ion complex and a pH dependence which is diagnostic of the acid dissociation of the reactive species. The mechanism of the metal catalyzed transesterification of HPNP has been assessed by solvent isotopic kinetic effect studies and involves the intramolecular nucleophilic attack of the substrate alcoholic group, activated by metal ion coordination. The intrinsic reactivity of the different complexes is controlled by the nature and structure of the ligand: complexes of tridentate ligands, particularly if characterized by a facial coordination mode, are more reactive than those of tetradentate ligands which can hardly allow binding sites for the substrate. In the case of tridentate ligands that form complexes with a facial coordination mode, a linear Brønsted correlation between the reaction rate (log k) and the pK(a) of the active nucleophile is obtained. The beta(nuc) values are 0.75 for the HPNP transesterification and 0.20 for the BNP hydrolysis. These values are indicated as the result of the combination of two opposite Lewis acid effects of the Zn(II) ion: the activation of the substrate and the efficiency of the metal coordinated nucleophile. The latter factor apparently prevails in determining the intrinsic reactivity of the Zn(II) complexes.

摘要

研究了一系列聚胺配体的锌(II)配合物在活化磷酸二酯双对硝基苯磷酸酯(BNP)和2-羟丙基-对硝基苯磷酸酯(HPNP)水解反应中的催化作用。反应对底物和金属离子配合物均表现出一级速率依赖性,且对pH有依赖性,这是反应活性物种酸解离的诊断依据。通过溶剂同位素动力学效应研究评估了金属催化HPNP酯交换反应的机理,该机理涉及由金属离子配位活化的底物醇基团的分子内亲核进攻。不同配合物的固有反应活性受配体的性质和结构控制:三齿配体的配合物,特别是具有面式配位模式的,比四齿配体的配合物更具反应活性,因为四齿配体几乎无法为底物提供结合位点。对于形成面式配位模式配合物的三齿配体,在反应速率(log k)与活性亲核试剂的pK(a)之间获得了线性布朗斯特相关性。HPNP酯交换反应的β(nuc)值为0.75,BNP水解反应的β(nuc)值为0.20。这些值表明是锌(II)离子两种相反的路易斯酸效应共同作用的结果:底物的活化和金属配位亲核试剂的效率。后一个因素显然在决定锌(II)配合物的固有反应活性方面占主导地位。

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