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Highly Sensitive and Selective Sulfite Ion Sensor Based on Biochemically Stable Iodo-Functionalized Coumarin Fluorophores

机译:基于生化稳定的碘官能化香豆素荧光团的高度敏感和选择性亚硫酸盐离子传感器

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摘要

Belonging to the class of sulfur oxyanions, the physiologically prevalent sulfite (SO3~(2-)) species has been serving as a popular synthetic additive to enhance the shelf life of a plethora of foods and beverages like bread and wine. On the contrary, an impermissible endogenous accumulation of this reactive sulfur species via multiple factors has been concerned in the functioning of skin disorders and neurodegenerative diseases like Alzheimer's. Accordingly, a pivotal role of sulfite in food quality and human health warrants a reliable analytical technique for the rapid and sensitive detection of SO3~(2-) ions in environmental specimens. This article features a new-fangled iodo-functionalized coumarin molecule (D), followed by an exploration of its analytical utility as a selectively sensitive sensor for SO3~(2-) ions via "switch-on" fluorescence. In stark contrast to its poorly ion-discriminating iodine-free analogue (E) as reported in the literature, the new fluorophore D was capable of rapidly sniffing out sulfite ions (~3 min) in a specific range of 1000-1 μM, in the back-drop of a diverse array of environmentally relevant anions at an ultra-low concentration of 77 nM in semi-aqueous medium by using simple and cheap fluorescence spectroscopy. The formed sensor found highly selective and sensitive in presence of wide variety of interfering ions and biothiols, which suggest their extreme utilization in the real samples. According to best of our knowledge, it is the first report, which can detection sulfite ion at very low concentration level and it work efficiently under UV-illumina-tion with bright fluorescence. A comparable sensitivity of D towards the target analyte (SO3~(2-) ions) was also recorded in real samples i.e. fresh real water samples and fresh juice specimens.
机译:属于硫氧的类别,生理上普遍存在的亚硫酸盐(SO3〜(2-)物种一直是一种流行的合成添加剂,以增强大量食物和饮料(如面包和酒)的保质期。相反,这种反应性硫种类通过多种因素的内源性积累一直涉及皮肤疾病的功能和神经退行性疾病(如阿尔茨海默氏病)。因此,亚硫酸盐在粮食质量和人类健康中的关键作用值得一项可靠的分析技术,可以在环境标本中快速和敏感地检测SO3〜(2-)离子。本文介绍了新的iodo官能化香豆素分子(D),然后通过“开关接通”荧光探索其分析实用程序作为SO3〜(2-)离子的选择性敏感传感器。与文献报道的那样,与其不良离子歧义的无碘类似物(E)形成鲜明对比,新的荧光团D能够以1000-1μm的特定范围迅速嗅出亚硫酸盐离子(~3分钟),在通过使用简单和廉价的荧光光谱法,在半水中培养基中以77 nm的超低浓度为77 nm的各种环境相关的阴离子的背景。形成的传感器在存在各种干扰离子和生物醇的情况下发现了高度选择性和敏感的,这表明它们在真实样品中的极端利用。据我们所知,这是第一份报告,它可以在非常低的浓度水平下检测亚硫酸盐离子,并且在明亮的荧光下有效地在紫外线 - 富富(UV-illumina-Tion)下工作。在实际样品中,即新鲜的真实水样和新鲜果汁样品中,还记录了D对目标分析物(SO3〜(2-)离子)的可比灵敏度。

著录项

  • 来源
    《Chemistry Select》 |2022年第17期|共9页
  • 作者单位

    Department of Chemistry Amity University, Punjab (India)-140306;

    Department of Chemistry, Panjab University, Chandigarh (India)-160014;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 Online;
  • 关键词

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