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首页> 外文期刊>Journal of the Serbian Chemical Society >Design of amino-functionalized chelated macroporous copolymer [poly(GMA-EDGMA)] for the sorption of Cu (II) ions
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Design of amino-functionalized chelated macroporous copolymer [poly(GMA-EDGMA)] for the sorption of Cu (II) ions

机译:氨基官能化螯合大孔共聚物[poly(GMA-EDGMA)]的设计,用于吸附Cu(II)离子

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Polymer-based, highly porous nanocomposites with functionalized ligands attached to the core structure are extremely efficient in the detection, removal and recovery of metals through the process of sorption. Quantumchemical models could be helpful for sorption process analyses. The sorption of Cu(II) ions by amino-functionalized chelating macroporous copolymers poly(GMA-co-EGDMA)-amine and sorption selectivity of the subject copolymers, ethylenediamine (en), diethylenetriamine (dien) and triethylenetetramine (trien), were successfully modelled by quantum chemical calculations. Considering the crystal structures from CSD and experimental conditions during the formation of metal complexes, the most frequent mononuclear complexes are those with the tetradentate teta ligand, while binuclear complexes are formed when the metal ion is in large excess. Although the en-copolymer was the most effective functionalized one, higher maximum sorption capacities (Qmax) were observed for the dien- and trien-copolymers, due to their abilities to form binuclear complexes. The enthalpy term has the greatest contribution to the total Gibbs energy change of reaction for the formation of mononuclear Cu(II) complexes (ΔGaq), while the solvation energy of the reaction has the greatest contribution in the formation of binuclear complexes. The results of the study indicate that small amines with the ability to form binuclear complex are the best choice for functionalization of the considered copolymer.
机译:基于聚合物的高度多孔纳米复合材料,其官能团与核心结构相连,在吸附过程中对金属的检测,去除和回收极为有效。量子化学模型可能有助于吸附过程分析。氨基官能化螯合大孔共聚物聚(GMA-co-EGDMA)-胺对Cu(II)离子的吸附以及目标共聚物乙二胺(en),二亚乙基三胺(dien)和三亚乙基四胺(trien)的吸附选择性成功通过量子化学计算建模。考虑到CSD的晶体结构和金属配合物形成过程中的实验条件,最常见的单核配合物是具有四齿teta配体的单核配合物,而双核配合物则是在金属离子大量过量时形成的。尽管该共聚物是最有效的官能化共聚物,但由于二烯和三烯共聚物具有形成双核络合物的能力,因此观察到更高的最大吸附容量(Qmax)。焓项对形成单核Cu(II)配合物(ΔGaq)的反应总Gibbs能量变化的贡献最大,而反应的溶剂化能对双核配合物的形成贡献最大。研究结果表明,具有形成双核络合物能力的小胺是考虑的共聚物官能化的最佳选择。

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