首页> 外文期刊>Chemistry: A European journal >Use of dipicolinate-based complexes for producing ion-imprinted polystyrene resins for the extraction of yttrium-90 and heavy lanthanide cations
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Use of dipicolinate-based complexes for producing ion-imprinted polystyrene resins for the extraction of yttrium-90 and heavy lanthanide cations

机译:基于二吡啶甲酸酯的配合物在生产离子印迹聚苯乙烯树脂中的应用,以提取90钇和重镧系元素阳离子

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Highly selective separation of yttrium (and lanthanides) is of interest for the design of radiopharmaceuticals, and an efficient method based on the ion-imprinting concept is proposed here. The synthesis and structural, thermodynamic and photophysical characterization of complexes of trivalent yttrium and lanthanides with two new vinyl derivatives of dipicolinic acid, HL1 and L2, are described. The feasibility of using ion-imprinted resins for yttrium and lanthanide separation is demonstrated. The resins were obtained by copolymerization with styrene and divinylbenzene and subsequent acid treatment to remove the metal ion. High-resolution Eu luminescence experiments revealed that the geometry of the complexation sites is well preserved in the imprinted polymers. The ion-imprinted polymer based on HL1 proved to be particularly well adapted for yttrium extraction, having a sizeable capacity (8.9 +/- 0.2mgg(-1) resin) and a fast rate of extraction (t(1/2) = 1.7min). In addition, lighter and heavier lanthanide ions are separated. Finally, the resin displays high selectivity for yttrium and lanthanide cations against alkali and alkaline earth metals. For instance, in a typical experiment, 10 ing of yttrium was extracted from 5 g of milk ash sample by 2 g of the resin. The good separation properties displayed by the resin based on HL1 open interesting perspectives for the production of highly pure Y-90 and radiolanthanides for medical applications, and for trace analysis of these radiochemicals in food and in the environment.
机译:钇(和镧系元素)的高度选择性分离是放射性药物设计的关注点,在此提出一种基于离子印迹概念的有效方法。描述了三价钇和镧系元素与二吡啶甲酸的两种新的乙烯基衍生物HL1和L2的配合物的合成,结构,热力学和光物理特性。证明了使用离子印迹树脂分离钇和镧系元素的可行性。通过与苯乙烯和二乙烯基苯共聚并随后进行酸处理以除去金属离子来获得树脂。高分辨率的Eu发光实验表明,络合位点的几何形状在印迹聚合物中得到了很好的保留。事实证明,基于HL1的离子印迹聚合物特别适合于钇萃取,其容量适中(8.9 +/- 0.2mgg(-1)树脂),萃取速度快(t(1/2)= 1.7分钟)。另外,较轻和较重的镧系离子被分离。最后,该树脂对钇和镧系元素阳离子对碱金属和碱土金属具有高选择性。例如,在一个典型的实验中,用2克树脂从5克奶粉样品中提取了10钇。基于HL1的树脂表现出的良好分离性能为生产高纯度Y-90和放射性镧系元​​素用于医学应用以及对食品和环境中这些放射性化学物质的痕量分析开辟了有趣的前景。

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