首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Use of phosphorus ligand NMR probes to investigate electronic and second-sphere solvent effects in ligand substitution reactions at manganese(II) and manganese(III)
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Use of phosphorus ligand NMR probes to investigate electronic and second-sphere solvent effects in ligand substitution reactions at manganese(II) and manganese(III)

机译:磷配体NMR探针用于研究锰(II)和锰(III)配体取代反应中电子和第二球溶剂的影响

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摘要

Manganese/ligand association dynamics were studied using a series of structurally related anionic phosphorus ester ligand probes [CH3OP(O)(X)(Y)(-), where X = CH3O, CH3CH2, or H and Y = O, S, or BH3]. Reactions of the probe ions with Mn(H2O)(6)(2+) and a manganese(III) porphyrin ((MnTMPyP5+)-T-III) were studied in aqueous solution by paramagnetic P-31 NMR line-broadening techniques. A satisfactory linear free energy relationship for reactions of the probe ions with Mn(H2O)(6)(2+) and (MnTMPyP5+)-T-III required consideration of both the basicity and solvent affinity of the probe ligands: log(k(app)) = log(k(0)) + α pK(a) + β log(K-ext), where k(0), α, and β are metal complex dependent parameters and pK(a) and K-ext represent the measured Bronsted acidity and water-butanol extraction constant for the probe anions, respectively. Reactions of Mn(H2O)(6)(2+) were relatively insensitive to changes in ligand basicity (α = -0.04) and favored the more hydrophilic anions (β = -0.54). These observations are consistent with a dissociative ligand exchange mechanism wherein the outer-sphere complex is stabilized by hydrogen bonding between Mn(H2O)(6)(2+) and the incoming ligand. In contrast, reactions with (MnTMPyP5+)-T-III are accelerated by decreases in both the basicity (α = -0.43) and the hydrophilicity (β = +0.97) of the probe. We conclude that reactions of (MnTMPyP5+)-T-III are also dissociative but that the aromatic groups of the porphyrin provide a hydrophobic environment surrounding the ligand binding site in (MnTMPyP5+)-T-III. Thus, the probe/water solvent interactions must be significantly weakened in order to form the outer-sphere complex that leads to ligand substitution. This work demonstrates the utility of phosphorus relaxation enhancement (PhoRE) techniques for characterizing the second coordination sphere environment of metal complexes leading to ligation and will allow comparison of the second coordination spheres of Mn(H2O)(6)(2+) and (MnTMPyP5+)-T-III to those of other metal complexes.
机译:使用一系列结构相关的阴离子磷酸酯配体探针[CH3OP(O)(X)(Y)(-),研究了锰/配体缔合动力学,其中X = CH3O,CH3CH2或H,Y = O,S或BH3]。通过顺磁性P-31 NMR谱线扩大技术研究了探针离子与Mn(H2O)(6)(2+)和锰(III)卟啉((MnTMPyP5 +)-T-III)的反应。探针离子与Mn(H2O)(6)(2+)和(MnTMPyP5 +)-T-III反应的令人满意的线性自由能关系需要同时考虑探针配体的碱性和溶剂亲和力:log(k( app))= log(k(0))+αpK(a)+βlog(K-ext),其中k(0),α和β是与金属络合物有关的参数,而pK(a)和K-ext分别代表探针阴离子测得的布朗斯台德酸度和水/正丁醇萃取常数。 Mn(H2O)(6)(2+)的反应对配体碱度的变化相对不敏感(α= -0.04),并倾向于亲水性更高的阴离子(β= -0.54)。这些观察结果与解离性配体交换机制是一致的,其中外球络合物通过Mn(H2O)(6)(2+)与传入配体之间的氢键而稳定。相反,(MnTMPyP5 +)-T-III的反应由于探针的碱度(α= -0.43)和亲水性(β= +0.97)的降低而加速。我们得出结论,(MnTMPyP5 +)-T-III的反应也是解离的,但卟啉的芳族基团提供了围绕(MnTMPyP5 +)-T-III中配体结合位点的疏水环境。因此,必须显着弱化探针/水溶剂的相互作用,以形成导致配体取代的外球络合物。这项工作演示了磷弛豫增强(PhoRE)技术用于表征导致络合的金属配合物的第二配位环境的实用性,并将允许比较Mn(H2O)(6)(2+)和(MnTMPyP5 + )-T-III取代其他金属配合物。

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