Amer Sara, Joseph Vincent, Oded Bat-El, Marks Vered, Grynszpan Flavio, Levine Mindy
Department of Chemical Sciences, Ariel University, 65 Ramat HaGolan Street, Ariel, 4077625, Israel.
Org Biomol Chem. 2023 Dec 6;21(47):9410-9415. doi: 10.1039/d3ob01563g.
In this study, we report a fluoride chemosensor based on the use of a non-fluorescent pre-coumarin, compound 1. This compound undergoes selective fluoride-triggered formation of coumarin 2, with a concomitant turn-on fluorescence signal. Although compound 1 exists as a mixture of alkene isomers (2 : 1 in favor of the isomer), only the minor -isomer undergoes cyclization. Nonetheless, comprehensive computational and experimental studies provide evidence that isomerization of -1 to -1, followed by fluoride-triggered phenolate evolution and intramolecular cyclization, facilitates the generation of coumarin 2 in high yield. Moreover, this system is an effective turn-on fluorescence sensor for fluoride anions, which displays outstanding selectivity (limited response to other commonly occurring analytes), sensitivity (lowest reported limits of detection for this sensor class), and practicality (works in solution and on paper to generate both fluorometric and colorimetric responses). Ongoing efforts are focused on expanding this paradigm to other pre-coumarin scaffolds, which also undergo analyte-specific coumarin formation accompanied by turn-on fluorescence.
在本研究中,我们报道了一种基于使用非荧光前香豆素化合物1的氟化物化学传感器。该化合物在氟化物触发下选择性地形成香豆素2,并伴随荧光信号开启。尽管化合物1以烯烃异构体混合物形式存在(比例为2:1,有利于反式异构体),但只有少量的顺式异构体发生环化。尽管如此,全面的计算和实验研究提供了证据,表明反式-1异构化为顺式-1,随后氟化物引发酚盐演变和分子内环化,有助于高产率地生成香豆素2。此外,该系统是一种有效的氟化物阴离子荧光开启传感器,具有出色的选择性(对其他常见分析物响应有限)、灵敏度(该传感器类别报道的最低检测限)和实用性(在溶液和纸张上均可工作,产生荧光和比色响应)。正在进行的工作重点是将这种模式扩展到其他前香豆素支架,这些支架也会在分析物特异性香豆素形成的同时伴随荧光开启。