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首页> 外文期刊>Dyes and Pigments >An unusual AIE fluorescent sensor for sequentially detecting Co2+-Hg2+-Cu2+ based on diphenylacrylonitrile Schiff-base derivative
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An unusual AIE fluorescent sensor for sequentially detecting Co2+-Hg2+-Cu2+ based on diphenylacrylonitrile Schiff-base derivative

机译:一种不寻常的AIE荧光传感器,用于依次检测基于二苯基丙烯腈Schiff基衍生物的CO 2 + -HG2 + -Cu2 +

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摘要

Aggregation-induced emission (AIE) molecules with strong fluorescence in aggregated states are favourable for preparing the organic fluorescence sensor in aqueous phase. In this work, a red fluorescent sensor 5 based on AIE diphenylacrylonitrile Schiff-base derivative was prepared in yield of 83.7%. Sample 5 exhibited strong AIE property in water with red fluorescence at lambda(ex) = 620 nm and the Stokes shift was as large as 260 nm. The experiments of sensing series of metallic ions suggested that sample 5 possessed the sequentially detecting abilities for Co2+-Hg2+-Cu2+, which was observed firstly for organic fluorescence sensor. The fluorescence of sample 5 was quenched rapidly in presence of Co2+, then recovered by adding Hg2+ and quenched once more by further adding Cu2+. The detection limits for Co2+, Hg2+ and Cu2+ were 0.0937, 0.0221, and 0.0988 mu M, respectively. The sensor mechanism was confirmed by fluorescence titration, H-1 NMR and MS spectra, indicating the 2:1 stoichiometric ratios of sample 5 with ions. The sensor for ions was successfully applied in test paper, exhibiting good practical application potential for detecting Co2+-Hg2+-Cu2+ sequentially. Sample 5 showed good bioimaging performance on living cell. The fluorescence of living cells with sample 5 also displayed the similar change of quenching-recovering-quenching by adding Co2+-Hg2+-Cu2+ orderly, implying the good ions-detecting prospect in living body environment.
机译:聚集在聚集状态中具有强荧光的聚集诱导的发射(AIE)分子有利于在水相中制备有机荧光传感器。在这项工作中,基于AIE二苯基丙烯腈席夫基衍生物的红色荧光传感器5以产率为83.7%制备。样品5在λ(ex)= 620nm处的红色荧光在水中表现出强烈的AIE属性,并且斯托克斯偏移大约260nm。感测的金属离子系列的实验表明,样品5具有CO 2 + -HG2 + -Cu2 +的顺序检测能力,其首先观察到有机荧光传感器。在CO 2 +的情况下快速淬灭样品5的荧光,然后通过进一步加入Hg2 +回收并通过进一步加入Cu 2 +淬灭。 CO2 +,HG2 +和Cu2 +的检测限为0.0937,0.0221和0.0988μm。通过荧光滴定,H-1 NMR和MS光谱来确认传感器机制,表明用离子的样品5的2:1化学计量比例。用于离子的传感器以试验纸成功应用,表现出依次检测CO 2 + -HG2 + -CU2 +的良好实际应用潜力。样品5在活细胞上显示出良好的生物体表现。用样品5的活细胞的荧光也通过加入CO 2 + -HG2 + -CU2 +有序地显示了猝灭回收猝灭的类似变化,这意味着在生活体内环境中的良好离子检测前景。

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