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首页> 外文期刊>Dyes and Pigments >A styrylpyridinium dye as chromogenic and fluorogenic dual mode chemosensor for selective detection of mercuric ion: Application in bacterial cell imaging and molecular logic gate
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A styrylpyridinium dye as chromogenic and fluorogenic dual mode chemosensor for selective detection of mercuric ion: Application in bacterial cell imaging and molecular logic gate

机译:作为发色和荧光双模化学传感器的Stirylpyridinium染料,用于选择性检测汞离子:在细菌细胞成像和分子逻辑门中的应用

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摘要

The present work demonstrates design, synthesis and chemosensing application of a styrylpyridinium based donor-pi-acceptor (D-pi-A) chromophore (L1) containing NS2O2 binding site. The chemosensor L1 selectively and successfully detects Hg2+ ions both visually and spectra-photometrically in perfect aqueous medium as well as in an aqueous-alcoholic mixture. Contrary to the reported literature on mercury sensing by cyanine dye which were reported to be "turn-off" Hg2+ sensor, probe L1 shows fluorescence "turn-on" response. chromophore L1 exhibits orange colour in aqueous and aqueous-alcoholic solutions due to intramolecular charge transfer (ICT) from the N, N-disubstitutedaminostyryl donor to pyridinium acceptor moiety. It shows Hg2+-specific colour change with concomitant generation of a new absorption band and large emission enhancement (similar to 10 fold) along with a blue shift of emission peak, owing to the formation of a selective 1: 1 L1-Hg2+ complex. H-1 NMR analysis reveals the binding mode of L1 with Hg2+. Hg2+ probing process was found to be reversible in presence of sulphide anion. The reversible off-on-off fluorescence response of the sensor with Hg2+ and S2- has been used to generate an INHIBIT molecular logic gate. The probe not only provides a highly efficient, low cost, portable sensor for recognition and naked-eye detection of Hg2+ with a low detection limit in aqueous solution but its turn-on fluorescence response and cell permeability offer the possibility of using it for fluorescence imaging in living cells.
机译:本作者通过NS2O2结合位点施用了含有NS2O2结合位点的STYRYLPYRIDINIUM的供体(D-PI-A)发色团(L1)的设计,合成和化学溶解。 Chemosensor L1选择性并成功地在完美的水性介质以及水溶液中以视觉和光谱法检测Hg2 +离子。与据报道的汞染料对汞感应的报告的文献相反,据报道是“关断”HG2 +传感器,探针L1显示荧光“开启”反应。 Chromophore L1由于来自N,N-DisubstitedAminostyryl供体中的分子内电荷转移(ICT)对吡啶鎓受体部分的分子内电荷转移(ICT),在水溶液中呈现橙色。它显示了HG2 +特异性的颜色变化,随着选择性1:1L1-HG2 +复合物的形成,伴随着新的吸收带和大的发射增强(类似于10倍)的蓝色偏移。 H-1 NMR分析显示L1的结合模式HG2 +。在存在硫化物阴离子的情况下发现HG2 +探测过程是可逆的。具有HG2 +和S2的传感器的可逆性越野荧光响应已用于产生抑制分子逻辑栅极。探针不仅提供高效,低成本,便携式的传感器,用于识别和裸眼睛检测HG2 +,水溶液中的低检测极限,但其导通荧光响应和细胞渗透率提供了使用它用于荧光成像的可能性在活细胞中。

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