首页> 外文期刊>Journal of Fluorescence >Determination of Trace Mercury by Solid Substrate-Room Temperature Phosphorimetry Quenching Method Based on Catalytic Effect of Hg2+on Formation of the Ion Association Complex [Sn(XO)6]4+·[(Fin)4]
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Determination of Trace Mercury by Solid Substrate-Room Temperature Phosphorimetry Quenching Method Based on Catalytic Effect of Hg2+on Formation of the Ion Association Complex [Sn(XO)6]4+·[(Fin)4]

机译:基于Hg2 + 对离子缔合配合物[Sn(XO)6 ] 4 + ·[[的形成的催化作用]的固体基质室温荧光猝灭法测定痕量汞Fin)4 ]

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摘要

A new method for the determination of trace mercury by solid substrate-room temperature phosphorimetry (SS-RTP) quenching method has been established. In glycine-HCl buffer solution, xylenol orange (XO) can react with Sn4+ to form the complex [Sn(XO)6]4+. [Sn(XO)6]4+ can interact with Fin− (fluorescein anion) to form the ion associate [Sn(XO)6]4+·[(Fin)4]−, which can emit strong and stable room temperature phosphorescence (RTP) on polyamide membrane (PAM). Hg2+ can catalyze H2O2 oxidizing the ion association complex [Sn(XO)6]4+·[(Fin)4]−, which causes the RTP to quench. The ΔIp value is directly proportional to the concentration of Hg2+ in the range of 0.016–1.6 fg spot−1 (corresponding concentration: 0.040–4.0 pg ml−1, 0.40 μl spot−1), and the regression equation of working cure is ΔIp=10.03+83.15 m Hg2+ (fg spot−1), (r=0.9987, n=6) and the detection limit (LD) is 3.6 ag spot−1(corresponding concentration: 9.0×10–15 g ml−1, the sample volume: 0.4 μl). This simple, rapid, accurate method is of high selectivity and good repeatability, and it has been successfully applied to the determination of trace mercury in real samples. The reaction mechanism for catalyzing H2O2 oxidizing the ion association complex ([Sn(XO)6]4+·[(Fin)4]−) SS-RTP quenching method to determine trace mercury is also discussed.
机译:建立了一种测定固体基质室温磷光(SS-RTP)淬灭法中痕量汞的新方法。在甘氨酸-HCl缓冲溶液中,二甲酚橙(XO)可以与Sn4 + 反应形成复合物[Sn(XO)6 ] 4 + 。 [Sn(XO)6 ] 4 + 可以与Fin-(荧光素阴离子)相互作用形成离子缔合体[Sn(XO)6 ] 4 + ·[[Fin)4 ]-,它可以在聚酰胺膜(PAM)上发出强而稳定的室温磷光(RTP)。 Hg2 + 可以催化H2 O2 氧化离子缔合配合物[Sn(XO)6 ] 4 + ·[(Fin)4 ] -,这导致RTP淬灭。 ΔIp值与Hg2 + 的浓度成正比,范围为0.016–1.6 fg spot-1 (相应的浓度:0.040–4.0 pg ml-1 ,0.40μlspot- 1 ),工作固化的回归方程为ΔIp= 10.03 + 83.15 m Hg2 + (fg spot-1 ),(r = 0.9987,n = 6)和检出限(LD)为3.6 ag spot-1 (对应浓度:9.0×10–15 g ml-1 ,样品量:0.4μl)。这种简单,快速,准确的方法具有很高的选择性和可重复性,并且已经成功地用于实际样品中痕量汞的测定。催化H2 O2 氧化离子缔合物([Sn(XO)6 ] 4 + ·[(Fin)4 ]- )还讨论了SS-RTP猝灭法测定痕量汞的方法。

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