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A Fluorescent Chemosensor with a Hybridized Local and Charge Transfer Nature and Aggregation-Induced Emission Effect for the Detection of Picric Acid

机译:具有杂交局部和电荷转移性质以及聚集诱导的发射效应的荧光化学传感器,用于检测PICRIC ACID

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A novel fluorescent molecule TPA-CO,which exhibited a hybridized local and charge transfer(HLCT)nature and aggregation-induced emission(AIE)effect,was developed and utilized as a chemosensor for the detection of picric acid(PA)in both organic solution and water.It was found that TPA-CO exhibited apparent fluorescent quenching along with the color change to yellow upon the addition of PA.Notably,more sensitive detection was achieved in the H2O: THF(9:1)medium,with the LOD almost two third lower than that in pure THF.Such more sensitive response in aqueous solution was accomplished by the synergy of HLCT and AIE effects in TPACO nanoparticles,which facilitated both highly efficient fluorescence in the absence of PA and rapid quenching rate in the presence of PA,respectively.Therefore,it is proposed an effective design strategy by integrating HLCT and AIE effects for developing PA chemosensors.
机译:一种新型的荧光分子TPA-CO,它表现出杂交局部和电荷转移(HLCT)性质和聚集诱导的发射效果(AIE)效应,并用作在两种有机溶液中检测PICRICICID(PA)的化学传感器 和水。发现TPA-CO表现出明显的荧光淬灭,并在添加PA时颜色变为黄色。不仅是在H2O中获得了更敏感的检测:THF(9:1)介质,LOD几乎具有LOD 在水溶液中比纯THF中的三分之一低三分之二,这是通过HLCT的协同作用和TPACO纳米颗粒中的AIE效应完成的,这在没有PA的情况下促进了高效的荧光,并且在PA存在的情况下促进了高效的荧光。 因此,通过整合开发PA化学传感器的HLCT和AIE效应,提出了一种有效的设计策略。

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