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首页> 外文期刊>Analytica chimica acta >Ion imprinted polymer particles: synthesis, characterization and dysprosium ion uptake properties suitable for analytical applications
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Ion imprinted polymer particles: synthesis, characterization and dysprosium ion uptake properties suitable for analytical applications

机译:离子印迹聚合物颗粒:适合分析应用的合成,表征和离子吸收特性

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Dysprosium(III) ion imprinted polymer particles were prepared by the copolymerization of styrene monomers and a crosslinking agent divinylbenzene in the presence of dysprosium(III)-5,7-dichloroquinoline-8-ol-4-vinyl pyridine ternary complex wherein dysprosium(III) ion is the imprint ion and is used to form the imprinted polymer. The dysprosium(III) ion was removed from polymer particles by leaching with 1:1 HCl which leaves a cavity in the polymer particles. The polymer particles both prior to and after leaching have been characterized by IR, TGA, DTA and XRD studies. The leached particles selectively preconcentrated dysprosium ion from dilute aqueous solutions as determined spectrophotometrically using Arsenazo-I as reagent. The optimum pH value for quantitative enrichment is 6-9 and desorption can be achieved by using 25 ml of 1 mol/l of HCl. The retention capacity of the polymer particles was found to be 40.15 mg/g, which is much higher than MIPs prepared by other imprinting techniques. The dysprosium ion impringting polymer gave 40 times higher distribution ratio for dysprosium ion compared to blank polymer. More significantly the selectivity coefficients of dysprosium compared to other lanthanides results in enhancement by 60-180-fold. The separation factors with respect to other selected lanthanides were also compared with liquid-liquid extractive separation using di-2-ethylhexyl phosphoric acid (D2EHPA) as extractant. The selectivity of dysprosium ion imprinting polymer(IIP) particles for dysprosium over yttrium is much higher and comparable in case of Nd and Lu when compared to conventional extractant such as D2EHPA in liquid-liquid extraction (LLE). Five replicate determinations of 50 mug of dysprosium present in 250 ml of sample gave a mean absorbance of 0.150 with a relative standard deviation of 2.42%. The detection limit corresponding to three times the standard deviation of the blank was found to be 2 mug/250 ml.
机译:在in(III)-5,7-二氯喹啉-8-ol-4-乙烯基吡啶三元络合物的存在下,通过苯乙烯单体与交联剂二乙烯基苯的共聚反应制备(III)离子印迹聚合物颗粒。离子是印迹离子,用于形成印迹聚合物。通过用1:1 HCl浸出从聚合物颗粒中除去(III)离子,从而在聚合物颗粒中留下空腔。浸出前后的聚合物颗粒已通过IR,TGA,DTA和XRD研究进行了表征。使用Arsenazo-I作为试剂,通过分光光度法测定,浸出的颗粒从稀水溶液中选择性地预浓缩了ion离子。定量富集的最佳pH值为6-9,通过使用25 ml 1 mol / l HCl可以实现解吸。发现聚合物颗粒的保留容量为40.15mg / g,这比通过其他压印技术制备的MIP高得多。与空白聚合物相比,掺离子的聚合物对离子的分配比率高40倍。与其他镧系元素相比,dy的选择性系数提高了60-180倍。还使用二-2-乙基己基磷酸(D2EHPA)作为萃取剂,对其他选择的镧系元素的分离因子进行了液-液萃取分离。与液-液萃取(LLE)中的常规萃取剂(如D2EHPA)相比,N离子印迹聚合物(IIP)颗粒对对钇的选择性要高得多,在Nd和Lu的情况下相当。对250毫升样品中存在的50杯进行五次重复测定,得出的平均吸光度为0.150,相对标准偏差为2.42%。发现相当于空白标准偏差三倍的检出限为2杯/ 250毫升。

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