Park Sangwoo, Ju Jeewon, Lee Young Ju, Lee Sang-Yup
Korea Basic Science Institute Gwangju Center 300 Yongbong-dong, Buk-gu Gwangju 61186 Republic of Korea
Department of Chemical and Biomolecular Engineering 50 Yonsei-ro, Seodaemun-gu Seoul 03722 Republic of Korea
RSC Adv. 2020 Apr 8;10(24):14243-14248. doi: 10.1039/d0ra00899k. eCollection 2020 Apr 6.
Sensing of fluoride in a solvent is highly required in healthcare and environmental rehabilitation. Among the various sensing methods, optical sensing has attracted significant research interest because it can conveniently recognize fluoride. Herein, a low molecular weight organogelator, '1,'6-bis(3-(1-pyrrolyl)propanoyl) hexanedihydrazide (DPH), containing a central butyl chain conjugated to two pyrrole rings through hydrazide groups, was used for optical sensing of fluoride in the forms of both solution and organogel. Association of fluoride with the -NH moiety of the hydrazide group endowed the DPH solution in dimethylformamide with a hyperchromicity under 350 nm. Exploiting the UV absorptivity, the DPH solution was examined as a chemosensor, displaying good selectivity toward fluoride among various anions and moderate sensitivity with a detection limit of 0.49 μM. The practical use of the DPH solution was demonstrated for fluoride sensing in toothpaste. Binding of fluoride also changed the molecular interactions of the DPH organogel, resulting in a phase transition from gel to sol. This gel-to-sol transition enabled the sensing of fluoride by the naked eye.
在医疗保健和环境修复领域,对溶剂中氟化物的传感具有很高的需求。在各种传感方法中,光学传感因其能够方便地识别氟化物而引起了广泛的研究兴趣。在此,一种低分子量有机凝胶剂“1,6-双(3-(1-吡咯基)丙酰基)己二酰二肼”(DPH)被用于溶液和有机凝胶形式的氟化物光学传感。氟化物与酰肼基团的-NH部分结合,使二甲基甲酰胺中的DPH溶液在350 nm以下呈现增色效应。利用紫外吸收特性,DPH溶液被用作化学传感器,对各种阴离子中的氟化物表现出良好的选择性,检测限为0.49 μM,具有中等灵敏度。DPH溶液在牙膏中氟化物传感方面的实际应用得到了验证。氟化物的结合也改变了DPH有机凝胶的分子相互作用,导致从凝胶到溶胶的相变。这种凝胶-溶胶转变使得能够通过肉眼检测氟化物。