19 F-Labeled Probes for Recognition-Enabled Chromatographic 19 F NMR

The NMR technique is among the most powerful analytical methods for molecular structural elucidation, process monitoring, and mechanistic investigations; however, the direct analysis of complex real-world samples is often hampered by crowded NMR spectra that are difficult to interpret. The combinati...

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Veröffentlicht in:Chemical record 2023-09, Vol.23 (9), p.e202300031-e202300031
Hauptverfasser: Xu, Zhenchuang, Zhao, Yanchuan
Format: Artikel
Sprache:eng
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Zusammenfassung:The NMR technique is among the most powerful analytical methods for molecular structural elucidation, process monitoring, and mechanistic investigations; however, the direct analysis of complex real-world samples is often hampered by crowded NMR spectra that are difficult to interpret. The combination of fluorine chemistry and supramolecular interactions leads to a unique detection method named recognition-enabled chromatographic (REC) F NMR, where interactions between analytes and F-labeled probes are transduced into chromatogram-like F NMR signals of discrete chemical shifts. In this account, we summarize our endeavor to develop novel F-labeled probes tailored for separation-free multicomponent analysis. The strategies to achieve chiral discrimination, sensitivity enhancement, and automated analyte identification will be covered. The account will also provide a detailed discussion of the underlying principles for the design of molecular probes for REC F NMR where appropriate.
ISSN:1527-8999
1528-0691
DOI:10.1002/tcr.202300031