首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Insight into the aggregation prospective of Schiff base AIEgens enabling an efficient hydrazine sensor in their aggregated state
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Insight into the aggregation prospective of Schiff base AIEgens enabling an efficient hydrazine sensor in their aggregated state

机译:洞察Schiff基地Aiegens的聚集前瞻性,使其在其汇总状态下有效的肼传感器

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In this study, we present two small fluorogenic Schiff base molecules 1 and 2 encompassing both donor and acceptor moieties, respectively, in the single-molecule to trigger the AIE activity and report their aggregation behavior through in-depth spectroscopic and microscopic analysis. Both 1 and 2 can act as a potential AIE luminogen by tuning the water content of the acetonitrile medium. Subsequently, in their aggregated state, they can act as an efficient hydrazine sensor due to a remarkable selective turn-on fluorescence response towards hydrazine in 1:1 acetonitrile-water medium. The detection limits (LODs) for hydrazine were calculated to be 0.5 ppb and 0.4 ppb for 1 and 2, respectively. The sensing phenomenon can be attributed to the hydrogen bonding-induced disaggregation phenomenon of AIEgen aggregates. Moreover, the sensing aptitude of AIEgens 1 and 2 to discriminate hydrazine in the vapor phase and various water samples and fluorescence bio-imaging studies highlights the analytical merit of AIEgens in practical applications.
机译:在这项研究中,我们提出了两个小的荧光希夫碱分子1和2,分别包含供体和受体部分,在单分子中触发AIE活性,并通过深入的光谱和显微镜分析报告其聚集行为。通过调节乙腈介质的含水量,1和2都可以作为潜在的AIE发光剂。随后,由于在1:1乙腈-水介质中对肼具有显著的选择性开启荧光响应,因此在其聚集状态下,它们可以作为有效的肼传感器。联氨的检测限(LOD)计算为1和2分别为0.5 ppb和0.4 ppb。传感现象可归因于氢键诱导的AIEgen聚集体解聚现象。此外,AIEgens 1和2的传感能力能够区分汽相和各种水样中的肼,荧光生物成像研究突出了AIEgens在实际应用中的分析价值。

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