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DFT study on hydrogen-bonding adsorption mechanism of rutin onto macroporous adsorption resins functionalized with amino, hydroxyl, and carboxyl groups

机译:DFT研究芦丁在氨基,羟基和羧基官能化的大孔吸附树脂上的氢键吸附机理

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摘要

The adsorption mechanism of a series of macroporous adsorption resins (p-(CH_3NH)PhL (L = NH_2, OH, COOH)) with rutin have been investigated using density functional theory calculations at B3LYP/6-31G(d,p) level of theory. Solvent effects on these species were explored using calculations that included a polarizable continuum model for the aqueous solvent. In this article, the geometry structure, interaction energies and the infrared spectra for the stable reactants and the adsorption complexes were obtained and analyzed. The results show that the hydrogen-bonding have been formed in the adsorption complexes. The higher interaction energy is calculated for the carboxyl group, while the resin with amino group has the highest adsorption capacity for rutin. The adsorption complexes become more and more stable as increasing the number of adsorbents. Our theoretical study is in good explanation for the experimental results.
机译:使用B3LYP / 6-31G(d,p)水平的密度泛函理论计算研究了一系列大孔吸附树脂(p-(CH_3NH)PhL(L = NH_2,OH,COOH))与芦丁的吸附机理。理论。使用包括水溶液的可极化连续体模型在内的计算方法来探索溶剂对这些物质的影响。本文获得并分析了稳定反应物和吸附配合物的几何结构,相互作用能和红外光谱。结果表明在吸附复合物中已形成氢键。对于羧基计算出较高的相互作用能,而具有氨基的树脂对芦丁的吸附能力最高。随着吸附剂数量的增加,吸附复合物变得越来越稳定。我们的理论研究很好地解释了实验结果。

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