Determination of enantiomeric excess by solid-phase extraction using a chiral metal-organic framework as sorbent

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Abstract

Metal-organic frameworks (MOFs) have recently attracted considerable attention because of their fascinating structures and intriguing potential applications in diverse areas. In this study, we developed a novel method for determination of enantiomeric excess (ee) of (±)-1,10-bi-2-naphthol by solid-phase extraction (SPE) using a chiral MOF, [Co(L-tyr)]n(L-tyrCo), as sorbent. After optimization of the experimental conditions, a good linear relationship between the ee and the absorbance of the eluate (R2 = 0.9984) was obtained and the standard curve was established at the concentration of 3 mmol L−1. The ee values of (±)-1,10-bi-2-naphthol samples can be rapidly calculated using the standard curve after determination of the absorbance of the eluate. The method showed good accuracy, with an average error of 2.26%, and is promising for ee analysis.

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Zhang, J. H., Tang, B., Xie, S. M., Wang, B. J., Zhang, M., Chen, X. L., … Yuan, L. M. (2018). Determination of enantiomeric excess by solid-phase extraction using a chiral metal-organic framework as sorbent. Molecules, 23(11). https://doi.org/10.3390/molecules23112802

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