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Molecular Recognition and Scavenging of Arsenate from Aqueous Solution Using Dimetallic Receptors

机译:使用双金属受体的水溶液中砷的分子识别和清除

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摘要

A series of copper(II), nickel(II) and zinc(II) dimetallic complexes were prepared and their affinities towards arsenate investigated. Indicator displacement assays (IDAs) were carried out to establish the complexes with best affinities towards arsenate. A di-zinc complex (3) was selected and its arsenate-binding abilities investigated by isothermal titration calorimetry (ITC). The X-ray crystal structure of this metallo-receptor bound to arsenate is also reported, which allowed us to establish the binding mode between 3 and this oxyanion. Immobilising 3 onto HypoGel resin yielded a novel adsorbent (Zn-HypoGel) with high affinity for arsenate. Adsorption of arsenate from competitive solutions and natural groundwater was greater than that of the commercially used iron oxide Bayoxide E33. Zn-HypoGel could be efficiently and simply regenerated by washing with sodium acetate solution.
机译:制备了一系列铜(II),镍(II)和锌(II)双金属配合物,并研究了它们对砷酸盐的亲和力。进行指示剂置换试验(IDA)以建立对砷酸盐具有最佳亲和力的复合物。选择一种二​​锌配合物(3),并通过等温滴定热法(ITC)研究其砷酸盐结合能力。还报道了该金属受体与砷酸盐结合的X射线晶体结构,这使我们能够确定3与该氧阴离子之间的结合模式。将3固定在HypoGel树脂上可产生对砷酸盐具有高亲和力的新型吸附剂(Zn-HypoGel)。竞争性溶液和天然地下水中砷酸盐的吸附量大于市售氧化铁Bayoxide E33。 Zn-HypoGel可以通过用乙酸钠溶液洗涤而高效而简单地再生。

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