A smartphone-assisted highly sensitive chromone-derived fluorescent receptor for rare-earth cerium metal ion detection: environmental monitoring and cancer cell imaging

IF 2.5 3区 化学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Saravana Kumar Prathiba, Karuppaiyan Kaviya, Ramar Rajamanikandan and Kailasam Saravana Mani
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Abstract

In this work, a new chromone-based fluorescent organic material, 3-(((2,4-di-tert-butyl-5-hydroxyphenyl)imino)methyl)-4H-chromen-4-one (OSA), has been designed and developed for the selective detection of cerium (Ce3+) ions. The structure of the synthesized receptor OSA has been confirmed through spectroscopic techniques, including FT-IR, NMR, and mass spectral analysis. The OSA receptor exhibits selective “turn off” colorimetric and fluorometric responses for the addition of Ce3+ ions. Upon incremental addition of Ce3+ ions, the receptor OSA exhibited a linearly decreasing response, with a lowest limit of detection of 63.8 nM. By using DFT, Job's plot, and mass spectrum analysis, the binding stoichiometry between the receptor and Ce3+ ions was verified as a 1 : 1 ratio. Ce3+ ion interaction with OSA produces a noticeable color shift, which was combined with an RGB color variation study of smartphones. Furthermore, this chemosensor OSA was applied in the detection of Ce3+ ions in environmental water samples. Fluorescence bioimaging in ME-180 cells revealed that the receptor OSA exhibited high cell permeability and showed a fluorescence “turn-off” response upon addition of Ce3+ ions.

Abstract Image

用于稀土铈金属离子检测的智能手机辅助高灵敏度铬衍生荧光受体:环境监测和癌细胞成像
在这项工作中,设计和开发了一种新的基于铬的荧光有机材料,3-((2,4-二叔丁基-5-羟基苯基)亚氨基)甲基)- 4h - chromen4 -one (OSA),用于选择性检测铈(Ce3+)离子。合成的受体OSA的结构已通过光谱技术,包括FT-IR, NMR和质谱分析得到证实。OSA受体对Ce3+离子的加入表现出选择性的“关闭”比色和荧光反应。随着Ce3+离子的增加,受体OSA的响应呈线性下降,最低检测限为63.8 nM。通过DFT、Job’s plot和质谱分析,验证了受体与Ce3+离子之间的结合化学计量比为1:1。Ce3+离子与OSA的相互作用会产生明显的色移,并结合智能手机的RGB颜色变化研究。并将该化学传感器OSA应用于环境水样中Ce3+离子的检测。ME-180细胞的荧光生物成像显示,受体OSA具有较高的细胞通透性,并且在添加Ce3+离子后表现出荧光“关闭”反应。
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来源期刊
New Journal of Chemistry
New Journal of Chemistry 化学-化学综合
CiteScore
5.30
自引率
6.10%
发文量
1832
审稿时长
2 months
期刊介绍: A journal for new directions in chemistry
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