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首页> 外文期刊>Journal of Fluorescence >Highly Selective Detection of Cr3+ Ion with Colorimetric & Fluorescent Response Via Chemodosimetric Approach in Aqueous Medium
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Highly Selective Detection of Cr3+ Ion with Colorimetric & Fluorescent Response Via Chemodosimetric Approach in Aqueous Medium

机译:通过化学介质方法在水性介质中高度选择性地检测CR3 +离子的比色和荧光反应

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So far, very few numbers of chemosensors for Cr3+ ion have been reported. However, the main drawback of reported receptors are the lack of selectivity and other trivalent cations such as Fe3+, Al3+ and anions like F- and -OAc frequently interfere with such assays. This paper present the synthesis, characterization & sensor studies of Schiff base containing naphthalene moiety which selectively detect Cr3+ ion by chemodosimetric approach. Using FT-IR, H-1 NMR, C-13 NMR and ESI mass spectroscopic techniques the probe was characterized. This receptor exhibit more selectivity and sensitivity towards Cr3+ than other divalent and trivalent cations like Mn2+, Zn2+, Co2+, Ni2+, Cd2+, Cu2+, Hg2+, Fe3+, and Al3+ ions. After the addition of chromium ion the receptor get change from yellow to colorless in aqueous medium. But no color change was observed on the addition of other metal ions. Using UV-Vis and PL studies, it was confirmed that the selective hydrolysis of imine group of receptor by Cr3+ ions takes place with high fluorescence enhancement that is corresponding to 1-naphthylamine. Receptor acts as selective chemodosimeter for Cr3+ ions with 2:1 stoichiometry and micro molar detection limit. This chemodosimetric approach was applied successfully for bio-imaging of HeLa cells.
机译:到目前为止,已经报道了对Cr3 +离子的非常少量的化学传感器。然而,报告的受体的主要缺点是缺乏选择性和其他三价阳离子,例如Fe3 +,Al3 +和F-和-OAc的阴离子经常干扰这些测定。本文介绍了含有萘部分的Schiff碱的合成,表征和传感器研究,其通过化学粒度方法选择性地检测CR3 +离子。使用FT-IR,H-1 NMR,C-13 NMR和ESI质谱技术表征。该受体对Cr3 +具有比Mn2 +,Zn2 +,CO 2 +,Ni2 +,CD2 +,Cu2 +,Hg2 +,Fe3 +和Al3 +离子的其他二价和三价阳离子更具选择性和敏感性。在加入铬离子后,受体在黄色至无色在水性介质中变化。但在添加其他金属离子时没有观察到颜色变化。使用UV-Vis和PL研究,证实CR3 +离子的受体的亚胺基的选择性水解具有高荧光增强,其对应于1-萘胺。受体用作CR3 +离子的选择性化学计量计,其中2:1化学计量和微摩尔检测极限。这种化学粒子方法已成功应用于HeLa细胞的生物成像。

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