首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Highly sensitive detection of neodymium ion in small amount of spent nuclear fuel samples using novel fluorescent macrocyclic hexadentate polyaminocarboxylate probe in capillary electrophoresis-laser-induced fluorescence detection
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Highly sensitive detection of neodymium ion in small amount of spent nuclear fuel samples using novel fluorescent macrocyclic hexadentate polyaminocarboxylate probe in capillary electrophoresis-laser-induced fluorescence detection

机译:新型荧光大环六齿聚氨基羧酸盐探针在毛细管电泳-激光诱导的荧光检测中高灵敏地检测少量乏核燃料样品中的钕离子

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A rapid and high-sensitive detection method for the total concentration of Nd ion (total Nd) in a small amount of a spent nuclear fuel sample is urgently required since the precise quantification of total Nd ion makes it possible for burnup (degree of fuel consumption) to be determined. In this work, a capillary electrophoresis-laser-induced fluorescent detection method (CE-LIF) is proposed for the analysis of total Nd in a spent fuel sample solution, with the use of a newly synthesized metal fluorescent probe which has a fluorescein and a macrocylic hexadentate chelating group, FTC-ABNOTA, for lanthanide (Ln) ions. Ln ions were derivatized to form a strongly fluorescent complex with the probe to suppress the quenching of the ligand-centered emission. The detection of Ln complexes in the CE-LIF indicated that the interaction between Ln ions and the FTC-ABNOTA was strong enough not to dissociate during migration. The mutual separation among the Ln-FTC-ABNOTA complexes in CE-LIF was achieved by pH control providing a dynamic ternary complexation (DTC) with hydroxide ions. Using the DTC separation mode, a high resolution of Nd from other Ln ions with high resolution of 1.3-1.9 and a theoretical plate number of 68,000, and a very low detection limit of 22. pM (3.2. ppt, 0.11. attomole amount basis) were successfully obtained. A simulated spent fuel sample containing various metal ions was examined in this method with a good quantification result of 102.1% recovery obtained even with a large excess of U.
机译:迫切需要一种快速,灵敏的检测少量乏核燃料样品中Nd离子总浓度(总Nd)的方法,因为对Nd离子总量的精确定量可以燃烧(燃料消耗程度)。 )待定。在这项工作中,提出了一种毛细管电泳-激光诱导荧光检测方法(CE-LIF),用于分析乏燃料样品溶液中的总Nd,方法是使用一种新合成的金属荧光探针,该探针具有荧光素和大环六齿螯合基团FTC-ABNOTA,用于镧系(Ln)离子。 Ln离子被衍生化以与探针形成强荧光络合物,从而抑制了以配体为中心的发射的猝灭。在CE-LIF中检测到Ln络合物表明Ln离子与FTC-ABNOTA之间的相互作用足够强,不会在迁移过程中解离。 CE-LIF中Ln-FTC-ABNOTA配合物之间的相互分离是通过pH控制实现的,该控制提供了与氢氧根离子的动态三元配合(DTC)。使用DTC分离模式,可以从其他Ln离子中分离出Nd的高分辨率,高分辨率为1.3-1.9,理论塔板数为68,000,检测限非常低,为22 pM(3.2。ppt,0.11。attomole量基础)已成功获得。用这种方法检查了包含各种金属离子的模拟乏燃料样品,即使U量过多,定量结果也很好,回收率为102.1%。

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