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首页> 外文期刊>Journal of Photochemistry and Photobiology, A. Chemistry >Synthesis of highly fluorescent RhDCP as an ideal inner filter effect pair for the NaYR4:Yb,Er upconversion fluorescent nanoparticles to detect trace amount of Hg(II) in water and food samples
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Synthesis of highly fluorescent RhDCP as an ideal inner filter effect pair for the NaYR4:Yb,Er upconversion fluorescent nanoparticles to detect trace amount of Hg(II) in water and food samples

机译:作为NAYR4的理想内滤波效应对高度荧光RHDCP的合成:Yb,ER上转化荧光纳米粒子检测水和食品样品中的痕量Hg(II)

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In the present work, a new approach is established for the selective and sensitive detection of trace amount of Hg(II) using spirolactam appended rhodamine-B based organic complex-RhDCP and upconversion-luminescent nanoparticles mixed system. Highly stable and water dispersable upconversion-luminescent nanoparticles and organic complex RhDCP was synthesized, characterized and confirmed. The developed RhDCP- upconversion-luminescent nanoparticles (NaYF4: Yb, Er) sensing probe exhibited pronounced selective enhancement in the absorption intensity and fluorescence quenching in the presence of Hg(II) ions. Based on the quantitative reaction between the (RhDCP and Hg(II)), a significant spectral overlap between the emission and absorption bands of upconversion-luminescent nanoparticles and RhDCP- Hg(II) occurred thereby resulting in inner filter effect induced emission quenching. At different optimal conditions, the RhDCP-upconversion fluorescence quenching efficiency was proportional to the concentration of Hg(II) owing to the inner filter effect. The proposed sensing strategy could sensitively detect Hg(II) as low as 13.5 nM. The practical applicability of the developed sensing method is established by carrying out sensing experiments in real sample analysis.
机译:在本作工作中,使用螺酰胺醛基基于罗丹明-B的有机复合RHDCP和上变发光纳米粒子混合系统来建立一种新的方法,用于使用螺酰胺醛酰胺基于罗丹明-B的有机复合体和上变发光纳米颗粒混合系统。合成,特征和证实,合成高度稳定和水可分散的上转化 - 发光纳米颗粒和有机复合RHDCP。所培养的rhdcp-上转化发光纳米粒子(Nayf4:Yb,ER)感测探针在Hg(II)离子存在下,在吸收强度和荧光猝灭中表现出明显的选择性增强。基于(RHDCP和HG(II)之间的定量反应,在上转化 - 发光纳米颗粒和RHDCP-HG(II)的发射和吸收带之间的显着光谱重叠,从而导致内部过滤效应诱导发射猝灭。在不同的最佳条件下,由于内部滤波器效应,RHDCP-UPCONSVERSION荧光猝灭效率与HG(II)的浓度成比例。所提出的传感策略可以敏感地检测HG(II)低至13.5nm。通过在真实样本分析中进行感测实验来建立发达的感测方法的实际适用性。

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