首页> 外文期刊>Magnetic Resonance in Chemistry: MRC >Enantiomeric NMR signal separation mechanism and prediction of separation behavior for a praseodymium (III) complex with (S,S)-ethylenediamine-N,N-disuccinate
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Enantiomeric NMR signal separation mechanism and prediction of separation behavior for a praseodymium (III) complex with (S,S)-ethylenediamine-N,N-disuccinate

机译:对映体NMR信号分离机构及镨(III)复合物的分离行为预测 - 乙二胺-N,N-四琥珀酸乙酯

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摘要

Because choice of chiral nuclear magnetic resonance (NMR) shift reagents and concentration conditions have been made empirically by trials and errors for chiral NMR analyses, the prediction of NMR signal separation behavior is an urgent issue. In this study, the separation of enantiomeric and enantiotopic(1)H and(13)C NMR signals for alpha-amino acids and tartaric acid was performed by using the praseodymium(III) complex with (S,S)-ethylenediamine-N,N '-disuccinate ((S,S)-EDDS). All the present D-amino acids exhibited larger downfield shift of their alpha-protons and alpha-carbons compared with those for the corresponding L-amino acids in common. This regularity is applicable to absolute configurational assignment and determination of optical purity of amino acids. The chemical shifts of beta-protons ofd- andl-alanine fully bound with the Pr(III) ((S,S)-EDDS) complex (delta(b)s) and the adduct formation constants of both enantiomers (Ks) were obtained by dependences of the observed downfield shifts of the beta-protons on the total concentrations of the respective enantiomers in the presence of a constant concentration of the Pr(III) complex. The difference in theKvalues was found to be predominant determining factor for the enantiomeric signal separation. The chemical shifts of both enantiomers (delta s) and the enantiomeric signal separations (Delta delta s) under given conditions could be calculated from the delta(b)andKvalues. Furthermore, prediction of the signal separation behavior was enabled by using the calculated delta values and the signal broadening obtained by dependences of the half-height widths of the observed signals on the bound/free substrate concentration ratios for the respective enantiomers.
机译:由于手性核磁共振(NMR)移位试剂和浓缩条件的选择通过试验和手性NMR分析的误差进行了凭经验,因此NMR信号分离行为的预测是一种紧急问题。在该研究中,通过使用镨(III)复合物与(S,S) - 乙二胺-N, n'--disuccinate((s,s)-edds)。与相应的L-氨基酸的那些相比,所有目前的D-氨基酸表现出α-质子和α-碳的较大下场移位。这种规律性适用于绝对的配置分配和氨基酸光学纯度的测定。获得与Pr(III)((S,S)复合物(δ(b))(δ(b))和映体(ks)的加合物形成常数完全结合的β-丙氨酸的化学变换通过观察到的下场移位β-质子的偏移在Pr(III)复合物的恒定浓度存在下相应对映体的总浓度。发现kvalues的差异是对映体信号分离的主要决定因素。对映体(ΔS)和对映体信号分离(Delta delta s)的化学位移可以根据Delta(b)andkvalues计算。此外,通过使用计算的Δ值使能信号分离行为的预测和通过通过观察到的信号的半高宽度的依赖性对各种对映体的束缚/自由衬底浓度比的依赖性获得的信号展现来实现。

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