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Fluorescent Organic Nanoparticles Based on Branched Small Molecule: Preparation and Ion Detection in Lithium-Ion Battery

机译:基于支链小分子的荧光有机纳米粒子:锂离子电池的制备和离子检测

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摘要

Fluorescent organic nanoparticles (FONs) as a new class of nanomaterials can provide more advantages than molecule based probes. However, their applications in specific metal ion detection have rarely been exploited. We design and synthesize a branched small-molecule compound with triazole as a core and benzothiadiazole derivative as branches. By a facile reprecipitation method, nanoparticles (NPs) of this compound can be prepared in aqueous solutions, which can show high selectivity and sensitivity to Fe(IIl) ions based on fluorescence quenching. In addition, the fluorescence intensity of these NPs is resistant to pH changes in solutions. Such characters of this kind of NPs can be utilized in Fe~(3+) impurity detection in a promising cathode material (LiFePO4) for lithium ion batteries. When exposed to Fe~(3+), both the triazole and benzothiadiazole groups contribute to the fluorescence quenching of NPs, but the former one plays a more important role in Fe~(3+) impurity detection. The sensing mechanism has also been investigated which indicates that a Fe-organic complex formation may be responsible for such sensing behavior. Our findings demonstrate that specific metal ion detection can be realized by FONs and have extended the application field of FONs for chemical sensing in aqueous solutions.
机译:荧光有机纳米颗粒(FONs)作为一类新型的纳米材料比基于分子的探针具有更多优势。但是,它们在特定金属离子检测中的应用很少被开发。我们设计和合成了一个支链的小分子化合物,以三唑为核心,苯并噻二唑衍生物为分支。通过简便的再沉淀方法,可以在水溶液中制备该化合物的纳米颗粒(NPs),该纳米颗粒可以基于荧光猝灭显示出对Fe(IIl)离子的高选择性和敏感性。另外,这些NP的荧光强度可抵抗溶液中pH的变化。此类NP的此类特征可用于锂离子电池的有前途的正极材料(LiFePO4)中的Fe〜(3+)杂质检测。当暴露于Fe〜(3+)时,三唑和苯并噻二唑基团都对NPs的荧光猝灭作出贡献,但前者在Fe〜(3+)杂质检测中起着更重要的作用。还已经研究了感测机制,其表明Fe-有机络合物的形成可能是这种感测行为的原因。我们的发现表明,FON可以实现特定的金属离子检测,并扩展了FON在水溶液中化学传感中的应用领域。

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