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The Importance of Solvent Effects on the Mechanism of the Pfeiffer Effect

机译:溶剂效应在菲佛效应机理中的重要性

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摘要

The Pfeiffer effect is observed when an optically active compound such as an amino acid is introduced to a solution containing a labile racemic metal complex, and an equilibrium shift is obtained. The “perturbation” results in an excess of one enantiomer over the other. The shift is a result of a preferential outer sphere interaction between the introduced chiral species and one enantiomeric form (Λ or Δ) of a labile metal complex. Speculations regarding the mechanism of the Pfeiffer effect have attributed observations to a singular factor such as pH, solvent polarity, or numerous other intermolecular interactions. Through the use of the lanthanide(III) complexes [Tb(DPA)3]3− and [Eu(DPA)3]3− (where DPA = 2,6-pyridinedicarboxylate) and the amino acids l-serine and l-proline; it is becoming clear that the mechanism is not so simply described as per the preliminary findings that are discussed in this study. It appears that the true mechanism is far more complicated than the attribute just a singular factor. This work attempts to shine light on the fact that understanding the behavior of the solvent environment may hypothetically be the key to offering a more detailed description of the mechanism.
机译:当将光学活性化合物如氨基酸引入含有不稳定的外消旋金属络合物的溶液中时,观察到菲佛效应,并获得平衡位移。 “扰动”导致一种对映体比另一种对映体过量。该偏移是引入的手性物质与不稳定金属络合物的一种对映体形式(Λ或Δ)之间优先的外球相互作用的结果。关于菲佛效应机理的推测归因于单一因素,例如pH,溶剂极性或许多其他分子间相互作用。通过使用镧系元素(III)络合物[Tb(DPA)3] 3-和[Eu(DPA)3] 3-(其中DPA = 2,6 -吡啶二羧酸盐)和氨基酸l-丝氨酸和l-脯氨酸;越来越明显的是,该机制并没有像本研究中讨论的初步发现那样简单地描述。看起来,真正的机制远比仅是单个因素的属性要复杂得多。这项工作试图阐明一个事实,即理解溶剂环境的行为可能是提供更详细的机理描述的关键。

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