Issue 44, 2025

Enantiodifferentiation of chiral hydroxy acids via19F NMR

Abstract

We present a high-resolution 19F NMR platform for the enantiodifferentiation of chiral hydroxy acids via a rapid three-component derivatization reaction between a 19F-labeled chiral amine, 2-formylphenylboronic acid, and the hydroxy acid analyte. The probe design includes two different fluorinated groups (–CF3 and –OCF3), allowing for detection using dual-site 19F readout. This dual-fluorine strategy markedly improves chiral resolution and minimizes signal overlap, a common limitation of conventional 1H NMR approaches. The method simultaneously distinguishes up to ten chiral hydroxy acids within a single spectrum and allows accurate determination of enantiomeric excess, offering a versatile, efficient, and separation-free platform for the rapid chiral analysis of structurally diverse hydroxy acids.

Graphical abstract: Enantiodifferentiation of chiral hydroxy acids via19F NMR

Supplementary files

Article information

Article type
Paper
Submitted
14 Aug 2025
Accepted
21 Oct 2025
First published
21 Oct 2025

New J. Chem., 2025,49, 19240-19246

Enantiodifferentiation of chiral hydroxy acids via19F NMR

Y. Zeng, Z. Ma and Y. Zhao, New J. Chem., 2025, 49, 19240 DOI: 10.1039/D5NJ03288A

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