Lanthanide-chiral carboxylate and chiral ester mixtures as NMR shift reagents.

Enantiomer Pub Date : 2000-01-01
T J Wenzel, K L Brogan
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Abstract

Achiral lanthanide tris beta-diketonate complexes are added to the acid and ester derivatives of the chiral NMR solvating agents dinitrobenzoyl-L-leucine and N-1-(1-naphthyl)ethylaminocarbonyl-L-valine to enhance enantiomeric discrimination. With the acid derivative, the solvating agent bonds directly to the lanthanide(III) complex to create an anionic species, and larger shifts are usually observed for the resonances of the enantiomer that associates more strongly with the solvating agent. With the ester derivative, the solvating agent generally does not bind to the lanthanide, whereas the substrate does. In this situation, the enantiomer that associates less strongly with the solvating agent exhibits the larger lanthanide-induced shifts. The effectiveness of adding neutral lanthanide complexes containing two beta-diketonate ligands and one chiral carboxylate ligand is compared to the anionic species with three beta-diketonate ligands and a chiral carboxylate ligand.

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镧系-手性羧酸盐和手性酯混合物作为核磁共振移位试剂。
将非手性镧系三β -二酮酸配合物加入到手性核磁共振溶剂化剂二硝基苯甲酰亮氨酸和N-1-(1-萘基)乙胺羰基-l -缬氨酸的酸和酯衍生物中,以增强对映体辨别能力。对于酸性衍生物,溶剂化剂直接与镧系元素(III)配合物结合形成阴离子,并且通常观察到与溶剂化剂结合更强的对映体的共振发生较大的变化。对于酯衍生物,溶剂化剂通常不会与镧系元素结合,而底物则会。在这种情况下,与溶剂化剂结合较弱的对映体表现出较大的镧系元素引起的位移。将含有两个-二酮酸配体和一个手性羧酸配体的中性镧系配合物与含有三个-二酮酸配体和一个手性羧酸配体的阴离子镧系配合物的效果进行了比较。
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