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Dendritic Chelating Agents. 1. Cu(II) Binding to Ethylene Diamine Core Poly(amidoamine) Dendrimers in Aqueous Solutions

机译:树突状螯合剂。 1.水溶液中Cu(II)与乙二胺核心聚(酰胺基胺)树状聚合物的结合

摘要

This paper describes an investigation of the uptake of Cu(II) by poly(amidoamine) (PAMAM) dendrimers with an ethylenediamine (EDA) core in aqueous solutions. We use bench scale measurements of proton and metal ion binding to assess the effects of (i) metal ion−dendrimer loading, (ii) dendrimer generation/terminal group chemistry, and (iii) solution pH on the extent of binding of Cu(II) in aqueous solutions of EDA core PAMAM dendrimers with primary amine, succinamic acid, glycidol, and acetamide terminal groups. We employ extended X-ray absorption fine structure (EXAFS) spectroscopy to probe the structures of Cu(II) complexes with Gx-NH_2 EDA core PAMAM dendrimers in aqueous solutions at pH 7.0. The overall results of the proton and metal ion binding measurements suggest that the uptake of Cu(II) by EDA core PAMAM dendrimers involves both the dendrimer tertiary amine and terminal groups. However, the extents of protonation of these groups control the ability of the dendrimers to bind Cu(II). Analysis of the EXAFS spectra suggests that Cu(II) forms octahedral complexes involving the tertiary amine groups of Gx-NH_2 EDA core PAMAM dendrimers at pH 7.0. The central Cu(II) metal ion of each of these complexes appears to be coordinated to 2−4 dendrimer tertiary amine groups located in the equatorial plane and 2 axial water molecules. Finally, we combine the results of our experiments with literature data to formulate and evaluate a phenomenological model of Cu(II) uptake by Gx-NH_2 PAMAM dendrimers in aqueous solutions. At low metal ion−dendrimer loadings, the model provides a good fit of the measured extent of binding of Cu(II) in aqueous solutions of G4-NH_2 and G5-NH_2 PAMAM dendrimers at pH 7.0.
机译:本文描述了在水溶液中带有乙二胺(EDA)核心的聚(酰胺基胺)(PAMAM)树状大分子对Cu(II)吸收的研究。我们使用质子和金属离子结合的基准规模测量来评估(i)金属离子-树状聚合物负载,(ii)树状聚合物生成/端基化学和(iii)溶液pH对Cu(II)结合程度的影响)在具有伯胺,琥珀酸,缩水甘油和乙酰胺端基的EDA核心PAMAM树状聚合物的水溶液中。我们采用扩展的X射线吸收精细结构(EXAFS)光谱来探测在pH 7.0的水溶液中与Gx-NH_2 EDA核心PAMAM树状聚合物形成的Cu(II)配合物的结构。质子和金属离子结合测量的总体结果表明,EDA核心PAMAM树状聚合物对Cu(II)的吸收涉及树状聚合物叔胺和末端基团。但是,这些基团的质子化程度控制了树枝状聚合物结合Cu(II)的能力。 EXAFS光谱分析表明,Cu(II)形成八面体络合物,涉及pH 7.0时Gx-NH_2 EDA核心PAMAM树状大分子的叔胺基。这些络合物中的每一个的中心Cu(II)金属离子似乎都与位于赤道平面的2-4个树状聚合物叔胺基和2个轴向水分子配位。最后,我们将实验结果与文献数据相结合,以建立和评估Gx-NH_2 PAMAM树状聚合物在水溶液中摄取Cu(II)的现象学模型。在低金属离子树状聚合物负载下,该模型可以很好地拟合在pH 7.0的G4-NH_2和G5-NH_2 PAMAM树状聚合物水溶液中Cu(II)的结合程度。

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