A novel selective “turn-on’’ fluorescent sensor for Hg2+ and its utility for spectrofluorimetric analysis of real samples

S. Tümay
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Abstract

A novel anthracene-based dipodal Schiff base ‘‘turn-on’’ fluorescent sensor (FS) was designed and synthesized by accessible and straightforward Schiff base reaction of salicylaldehyde and 9,10-bis(aminomethyl)anthracene with high yield. The chemical characterization of fluorescent sensor FS was performed by standard spectroscopic techniques (MALDI-MS, FT-IR, 1H, and 13C NMR), and photophysical properties were exanimated by UV-vis and fluorescent spectroscopies. The fluorescent sensor FS can coordinate with Hg2+ via Schiff base moiety when analytical signal as a “turn on” fluorescent response was obtained via anthracene moiety after coordination. Also, spectrofluorimetric analysis of Hg2+ was carried out using fluorescent sensor FS in environmental water samples after optimization required experimental conditions such as pH, the time before measurements, and photostability. According to obtained results, the presented fluorescent sensor can be used for selective and sensitive spectrofluorimetric determination of Hg2+.
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一种新的Hg2+选择性“开启”荧光传感器及其在实际样品荧光光谱分析中的应用
以水杨醛和9,10-双(氨基甲基)蒽为原料,通过简单易行的席夫碱反应,设计并合成了一种新的蒽基偶极席夫碱“开启”荧光传感器(FS)。荧光传感器FS的化学表征通过标准光谱技术(MALDI-MS、FT-IR、1H和13C NMR)进行,光物理性质通过UV-vis和荧光光谱进行表征。当通过配位后的蒽部分获得作为“开启”荧光响应的分析信号时,荧光传感器FS可以通过席夫碱部分与Hg2+配位。此外,在优化所需的实验条件(如pH、测量前时间和光稳定性)后,使用荧光传感器FS在环境水样中进行Hg2+的荧光光谱分析。结果表明,该荧光传感器可用于Hg2+的选择性、灵敏的荧光光谱测定。
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来源期刊
CiteScore
1.60
自引率
0.00%
发文量
81
审稿时长
5 weeks
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