Biswas Rima, Ghosh Pallab, Banerjee Tamal, Ali Sk Musharaf, Singha Deb Ashish Kumar
Department of Chemical Engineering, Indian Institute of Technology Guwahati, Guwahati, 781039 Assam, India.
Bhabha Atomic Research Center, Chemical Engineering Division, Mumbai, 400085 Maharashtra, India.
ACS Omega. 2018 Feb 8;3(2):1663-1674. doi: 10.1021/acsomega.7b01828. eCollection 2018 Feb 28.
Extraction of metal ions (i.e., Cs, K, Na, and Rb) in the presence of ionophore such as dibenzo-18-crown-6 (DB18C6) from the nitrobenzene-water biphasic system is reported by COSMO-RS (conductor-like screening model for real solvents) predictions, molecular dynamics simulation, along with experimental validation. The predicted values of selectivity as obtained for the Na-DB18C6 complex were 4.571, 4.877, and 4.947 at 298.15, 308.15, and 318.15 K, respectively. This was then confirmed by the experimental distribution coefficient () as obtained in the diluent systems along with by varying the metal ion to crown ether ligand (M-L) mole ratios: 10:1 (0.1 M M and 0.01 M DB18C6), 1:1 (0.01 M M and 0.01 M DB18C6), and 1:10 (0.001 M M and 0.01 M DB18C6). The experimentally determined values of (i.e., 0.059, 0.060, and 0.056) were found to be very large as compared to the values of (i.e., 0.001, 0.010, and 0.024) in the nitrobenzene phase. It indicates an excellent extraction ability of DB18C6 for Na. The rate of phase separation for the CsNO system was slow as compared to other metal ion systems. The binding energies, free energies, and nonbonded interaction energies of the complexed metal ion in solution were calculated with both explicit and implicit solvent models. A higher interaction energy between Na-DB18C6 complex and nitrobenzene was observed (i.e., -289.92 in the explicit model and -143.12 kcal/mol in the implicit model) when compared with other metal ions (i.e., Cs, K, and Rb).
通过COSMO-RS(真实溶剂的类导体筛选模型)预测、分子动力学模拟以及实验验证,报道了在离子载体如二苯并-18-冠-6(DB18C6)存在下,从硝基苯-水双相体系中萃取金属离子(即铯、钾、钠和铷)的情况。对于Na-DB18C6配合物,在298.15、308.15和318.15 K时预测的选择性值分别为4.571、4.877和4.947。然后通过在稀释剂体系中获得的实验分配系数以及改变金属离子与冠醚配体(M-L)的摩尔比(10:1(0.1 M M和0.01 M DB18C6)、1:1(0.01 M M和0.01 M DB18C6)和1:10(0.001 M M和0.01 M DB18C6))得到了证实。与硝基苯相中的值(即0.001、0.010和0.024)相比,实验测定的分配系数值(即0.059、0.060和0.056)非常大。这表明DB18C6对钠具有优异的萃取能力。与其他金属离子体系相比,CsNO体系的相分离速率较慢。使用显式和隐式溶剂模型计算了溶液中络合金属离子的结合能、自由能和非键相互作用能。与其他金属离子(即铯、钾和铷)相比,观察到Na-DB18C6配合物与硝基苯之间具有更高的相互作用能(即显式模型中为-289.92,隐式模型中为-143.12 kcal/mol)。