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首页> 外文期刊>RSC Advances >Naphthalimide based smart sensor for CN?/Fe3+ and H2S. Synthesis and application in RAW264.7 cells and zebrafish imaging
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Naphthalimide based smart sensor for CN?/Fe3+ and H2S. Synthesis and application in RAW264.7 cells and zebrafish imaging

机译:基于萘硫代亚胺的CNα/ Fe3 +和H2S的智能传感器。在Raw264.7细胞和斑马鱼成像中的合成和应用

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Achieving selective detection of target analytes in aqueous media continues to be an arduous proposition. Herein, we report the conceptualization and synthesis of a novel tailor-fit molecular probe R based on 1,8-naphthalimide which acts as a trifunctional molecular sensor for CN ~(?) , Fe ~(3+) and H _(2) S. R shows colorimetric and fluorometric “on–off” relay recognition for CN ~(?) (red colour and orange emission) and Fe ~(3+) (no colour and no emission) in 5% H _(2) O + DMSO medium which is experimentally ascertained to be a tandem deprotonation–protonation process and is supported by ~(1) H-NMR titration. Among all RSS (Reactive Sulphur Species), R shows selectivity for H _(2) S through red colouration. Other coexistent anions, cations and RSS cause no discernible perturbation to the detection process. The detection of H _(2) S is attributed to a chemodosimetric reduction of the nitro to amino group as evidenced by a potentiometric titration assay. The experimental observations are well supported by DFT theoretical calculation. The K _(a) for CN ~(?) /Fe ~(3+) are 1.4 × 10 ~(4) M ~(?1) , 6.07 × 10 ~(4) M ~(?1) respectively and photochemical yield of R + CN ~(?) is 0.86. Limit of detections for CN ~(?) , Fe ~(3+) and H _(2) S are 17.5 nM, 8.69 μM and 8.1 μM respectively. Receptor R is effective for real time applications, bio-compatible and has been successfully employed for confocal fluorescence imaging of RAW264.7 cell and zebrafish.
机译:实现含水介质中靶分析物的选择性检测仍然是艰苦的主张。在此,我们报告了基于1,8-萘酰亚胺的新型定制分子探针R的概念化和合成,其作为CN〜(?),Fe〜(3+)和H _(2)的三官能分子传感器。 S. R显示了CN〜(α)(红色和橙色发射)和Fe〜(3+)(无颜色和没有发射)的比色和缺函数“开关”中继识别在5%H _(2)O中实验确定的+ DMSO培养基是串联质子化 - 质子化方法,并由〜(1)H-NMR滴定负载。在所有RS(反应性硫物质)中,R显示通过红色着色的H _(2)S的选择性。其他共存阴离子,阳离子和RSS对检测过程没有任何可辨别的扰动。 H _(2)S的检测归因于氨基的化学晶体化合物,其通过电位滴定测定证明了氨基。 DFT理论计算得到了很好的支持实验观察。 CN〜(a)的k _(a)分别为1.4×10〜(4)m〜(?1),6.07×10〜(4)m〜(?1)和光化学R + CN〜(?)的产率为0.86。 CN〜(α),Fe〜(3+)和H _(2)S的检测极限分别为17.5nm,8.69μm和8.1μm。受体R对于实时应用是有效的,生物兼容,并已成功用于Raw264.7细胞和斑马鱼的共聚焦荧光成像。

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