Rizal B Muh, Pambudi Fajar Inggit
Department of Chemistry, Faculty of Mathematics and Natural Science, Universitas Gadjah Mada Yogyakarta 55281 Indonesia
RSC Adv. 2024 Sep 30;14(42):31143-31152. doi: 10.1039/d4ra04169k. eCollection 2024 Sep 24.
Hisditine-functionalized UiO-66-NH (UiO-66-NH@Hst) as a novel "turn-on" fluorescent probe to detect fluoride ions has been successfully synthesized using the solvothermal method. The results showed that fluoride ion detection gave the best fluorescence response in water media and no response was observed in non-polar solvents. Detection at pH 3-10 produces a relatively similar fluorescence response and decreases quite significantly at pH 11-13. UiO-66-NH@Hst is very selective and stable towards fluoride ions as evidenced by the appearance of blue luminescence under UV light ( nm) compared to other ions. A possible mechanism for detecting fluoride ions is through the formation of hydrogen bonds, which results in incremental electron transfer from organic ligands to Zr-oxo clusters. The LoD value obtained in this study was 0.013 ppm, which is smaller than the maximum concentration of fluoride ions in drinking water samples (1.5 ppm) set by the World Health Organization (WHO). Therefore, UiO-66-NH@Hst can be a candidate fluorescence-based sensor for fluoride ions.
通过溶剂热法成功合成了组氨酸功能化的UiO-66-NH(UiO-66-NH@Hst)作为一种新型的“开启型”荧光探针用于检测氟离子。结果表明,氟离子检测在水介质中给出最佳荧光响应,在非极性溶剂中未观察到响应。在pH 3 - 10下检测产生相对相似的荧光响应,而在pH 11 - 13时显著降低。与其他离子相比,在紫外光( nm)下出现蓝色发光证明UiO-66-NH@Hst对氟离子具有很高的选择性和稳定性。检测氟离子的一种可能机制是通过形成氢键,这导致从有机配体到锆氧簇的电子转移增加。本研究中获得的检测限(LoD)值为0.013 ppm,小于世界卫生组织(WHO)设定的饮用水样品中氟离子的最大浓度(1.5 ppm)。因此,UiO-66-NH@Hst可以作为一种基于荧光的氟离子传感器候选物。