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首页> 外文期刊>RSC Advances >A new bisglycolamide substituted calix[4]arene-benzo-crown-6 for the selective removal of cesium ion: combined experimental and density functional theoretical investigation
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A new bisglycolamide substituted calix[4]arene-benzo-crown-6 for the selective removal of cesium ion: combined experimental and density functional theoretical investigation

机译:一种新的双甘醇酰胺取代的杯[4]芳烃-苯并冠-6选择性去除铯离子:结合实验和密度泛函理论研究

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A new bisglycolamide substituted calix-benzo-crown-6 (CBCBGA) ionophore has been synthesized and characterized by using H-1, C-13 NMR, ESI-MS and elemental analysis. Detailed investigations on the effect of various parameters such as the aqueous phase acidity, ionophore concentration and nitrate ion concentration on extraction of cesium have been carried out. The new ionophore is found to be highly selective for Cs over other metal ions present in the simulated high level liquid waste solution. The complexing ability of this novel ionophore towards Cs+ and Na+ metal ions was further complimented by predicting the structure, extraction free energy and fraction of charge transfer using the B3LYP density functional employing a split-valence plus polarization (SVP) basis set in conjunction with the conductor like screening model. The unusually high selectivity of CBCBGA for Cs+ ion over Na+ ion was established by the calculated value of difference in the free energy, Delta Delta G (Delta G(ext, Cs+) - Delta G(ext, Na+)), -9.46 kcal mol(-1), which is in good agreement with the experimentally determined value of -5.59 kcal mol(-1). The calculated values of rho and del rho at the bond critical point for the hydrated Na+ ion are found to be reduced during complexation with the CBCBGA, whereas for the hydrated Cs+ ion, though rho remains same, the value of del 2 rho is increased which seems to play a decisive role in the higher selectivity to Cs+ ion over Na+ ion of CBCBGA. The new CBCBGA ionophore shows promise for the selective removal of Cs+ ion over other metal ions present in the simulated high level liquid waste solution.
机译:通过H-1,C-13 NMR,ESI-MS和元素分析,合成并表征了一种新的双甘氨酰胺取代的杯-苯并-冠-6(CBCBGA)离子载体。已经对各种参数如水相酸度,离子载体浓度和硝酸根离子浓度对铯萃取的影响进行了详细研究。发现新的离子载体对Cs的选择性比对模拟高放废液中存在的其他金属离子的选择性高。通过使用B3LYP密度泛函使用分裂价加极化(SVP)基础并结合B3LYP密度函数预测结构,提取自由能和电荷转移分数,进一步补充了这种新型离子载体对Cs +和Na +金属离子的络合能力。指挥喜欢筛选模型。 CBCBGA对Cs +离子对Na +离子的异常高的选择性是通过计算出的自由能差值Delta Delta G(Delta G(ext,Cs +)-Delta G(ext,Na +))得出的-9.46 kcal mol (-1),与实验确定的-5.59 kcal mol(-1)值非常吻合。发现在与CBCBGA络合过程中,水合的Na +离子在键临界点的rho和del rho的计算值降低,而水合的Cs +离子虽然rho保持不变,但del 2 rho的值却增加了,这对于水合Na +离子而言是降低的。与CBCBGA的Na +离子相比,Cs +离子具有更高的选择性似乎起着决定性作用。新的CBCBGA离子载体显示出有希望比模拟的高放废液中存在的其他金属离子选择性除去Cs +离子的前景。

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