Ali Sk Musharaf
Chemical Engineering Division, Bhabha Atomic Research Centre, HBNI, Mumbai 40085, India.
ACS Omega. 2018 Oct 12;3(10):13104-13116. doi: 10.1021/acsomega.8b00933. eCollection 2018 Oct 31.
To search for new ligands suitable for the separation of minor actinides (MA) from lanthanides (Ln) in nuclear waste reprocessing, theoretical (density functional theory) studies were carried out on the complexation (structures, bonding, and thermodynamics) of La, Sm, Eu, and Am complexes with moderately soft donor ligands TPEN [,,','-tetrakis(2-pyridylmethyl)ethylenediamine] and PPDEN [,,',″,″-pentakis(2-pyridylmethyl) diethylenetriamine] in aqueous and nitrobenzene solutions. B3LYP level of theory was used in conjunction with the conductor-like screening model for real systems (COSMO-RS). The metal ions in [M(NO)(TPEN)]NO and M(NO)(PPDEN) complexes were deca-coordinated with both TPEN and PPDEN. The enthalpy of the complexation with TPEN in an aqueous solution was found to be negative, indicating the exothermic nature of the reaction as observed in the experiments. The calculated values of free energy of complexation follow the experimental trend: Am > Sm > La. Furthermore, the calculated free energy with PPDEN is reduced compared to that with TPEN, which may be attributed to the ligand straining during complex formation, which is also reflected in greater residual charges on both the Eu and Am central ions in the complexes of octadentate PPDEN compared to hexadentate TPEN. The experimental complexation selectivity of Am over Eu with TPEN is established by employing COSMO-RS. Furthermore, TPEN is Am-selective, whereas PPDEN is Eu-selective, which could be exploited for the efficient separation of MA from Ln.
为了寻找适用于核废料后处理中从镧系元素(Ln)中分离次锕系元素(MA)的新配体,我们开展了理论研究(密度泛函理论),研究了La、Sm、Eu和Am的配合物与中等软度给体配体TPEN [,,','-四(2-吡啶甲基)乙二胺] 和PPDEN [,,',″,″-五(2-吡啶甲基)二乙烯三胺] 在水溶液和硝基苯溶液中的络合作用(结构、键合和热力学)。理论水平采用B3LYP并结合真实体系的导体类筛选模型(COSMO-RS)。[M(NO)(TPEN)]NO和M(NO)(PPDEN)配合物中的金属离子与TPEN和PPDEN均形成十配位。发现水溶液中与TPEN络合的焓为负,表明该反应如实验中观察到的那样是放热反应。计算得到的络合自由能值符合实验趋势:Am > Sm > La。此外,与TPEN相比,PPDEN的计算自由能降低,这可能归因于络合物形成过程中的配体应变,这也反映在八齿PPDEN的配合物中Eu和Am中心离子上的剩余电荷比六齿TPEN的更大。通过使用COSMO-RS确定了TPEN对Am相对于Eu的实验络合选择性。此外,TPEN对Am具有选择性,而PPDEN对Eu具有选择性,这可用于从Ln中高效分离MA。