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首页> 外文期刊>Journal of Applied Polymer Science >Binding behavior of Fe3+ ions on ion-imprinted polymeric beads for analytical applications
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Binding behavior of Fe3+ ions on ion-imprinted polymeric beads for analytical applications

机译:Fe3 +离子在离子印迹聚合物珠上的结合行为,用于分析应用

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We used a molecular imprinting approach to achieve specific metal binding utilizing N-methacryloyl-(L)cysteine methyl ester (MAC) as a metal-complexing ligand. MAC was synthesized using methacryloyl chloride and cysteine methyl ester. Then, Fe3+ was complexed with MAC monomer. Fe3+-imprinted poly(hydroxyethyl methacrylate-N-methacryloyl-(L)-cysteine methyl ester) [poly(HEMAMAC)] beads with average size of 63-140 gm were produced by suspension polymerization. After that, the template ions (i.e. Fe3+ ions) were removed by 0.1M HCI. Fe3+- imprinted beads were characterized swelling studies, FTIR, and elemental analysis. The Fe3+-imprinted beads FTIR, and elemental analysis with a swelling ratio of 72%, and containing 3.9 mmol MAC/g were used in the binding of Fe3+ ions from aqueous solutions, tap water, certified reference serum sample, and real serum sample. Maximum binding capacity, optimum pH, and equilibrium binding time were 107 mu mol/g, pH 3.0, and 30 min, respectively. It was observed that even in the presence of other ions, Fe3+-imprinted beads selectively bound Fe3+ ions with 97% efficiency. Removal of Fe3+ ions from certified reference serum sample was approximately found to be 33%. (c) 2006 Wiley Periodicals, Inc.
机译:我们使用一种分子印迹方法,利用N-甲基丙烯酰基-(L)半胱氨酸甲酯(MAC)作为金属络合配体来实现特定的金属结合。 MAC是使用甲基丙烯酰氯和半胱氨酸甲酯合成的。然后,Fe3 +与MAC单体络合。通过悬浮聚合制备平均尺寸为63-140gm的Fe 3+印迹的聚(甲基丙烯酸羟乙酯-N-甲基丙烯酰基-(L)-半胱氨酸甲酯)[聚(HEMAMAC)]珠。之后,用0.1M HCl去除模板离子(即Fe3 +离子)。 Fe3 +印迹珠的特征是溶胀研究,FTIR和元素分析。 Fe3 +印迹珠FTIR和溶胀率为72%且含3.9 mmol MAC / g的元素分析用于结合水溶液,自来水,认证参考血清样品和真实血清样品中的Fe3 +离子。最大结合容量,最佳pH和平衡结合时间分别为107μmol / g,pH 3.0和30分钟。观察到,即使在存在其他离子的情况下,Fe3 +印迹珠也可以97%的效率选择性结合Fe3 +离子。从认证的参考血清样品中去除Fe3 +离子约为33%。 (c)2006年Wiley Periodicals,Inc.

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