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Pyrene-Derived Benzimidazoles as Fluorescent Sensors for Detection of Fluoride Anion

机译:芘衍生的苯并咪唑作为荧光传感器,用于检测氟化物阴离子

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Fluoridated water is widely used all over the world for decreasing tooth decay among the population. According to World Health Organization (WHO), dental caries is a major oral health problem in most industrialized countries affecting 60-90% of schoolchildren and the vast majority of adults. On the other hand, high concentrations of fluoride anion can cause dental fluorosis and even skeletal fluorosis. The optimal level of fluoride in drinking water is still not exactly known and recommended concentration varies from country to country. Thus, determination of fluoride is very important. Among all methods of determination of fluoride, the use of fluorescent sensors is most mobile and fast approach. Herein we report on synthesis and some sensing properties of pyrene-derieved 1H-benzimidazoles 2 and investigating their ability to determine fluoride anion qualitatively. Compound 2a has shown specific reaction to the fluoride anion which consisted in changing of emission color from bright blue to yellowish. Solution color has also changed from pale yellow to orange. All the other compounds have shown slight changes in case of cyanide ion or no changes at all.
机译:氟化水被广泛用于世界各地的牙齿衰减。根据世界卫生组织(WHO),龋齿是大多数工业化国家的主要口腔健康问题,影响了60-90%的学童和绝大多数成年人。另一方面,高浓度的氟化物阴离子可导致牙氟毒性甚至骨骼氟中毒。饮用水中氟化物的最佳水平仍然不确定,建议的浓度因国家到国家而异。因此,氟化物的测定非常重要。在确定氟化物的所有方法中,荧光传感器的使用是最移动的和快速的方法。在本文中,我们报告了芘的1H-苯并咪唑2的合成和一些感测性能,并研究了定性测定氟化物阴离子的能力。化合物2a显示出对氟化物阴离子的特异性反应,其包括从鲜艳的蓝色到淡黄色的发光颜色。溶液颜色也从浅黄色到橙色变化。所有其他化合物都显示出氰化物离子或根本没有变化的情况下的轻微变化。

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