Department of Chemical and Biomolecular Engineering, University of Notre Dame, 182 Fitzpatrick Hall, Notre Dame, IN 46556, USA.
Phys Chem Chem Phys. 2013 Oct 14;15(38):15954-63. doi: 10.1039/c3cp52444b. Epub 2013 Aug 20.
Intra- and intermolecular force field parameters for the interaction of actinyl ions (AnO2(n+), where, An = U, Np, Pu, Am and n = 1, 2) with water have been developed using quantum mechanical calculations. Water was modeled with the extended simple point charge potential (SPC/E). The resulting force field consists of a simple form in which intermolecular interactions are modeled with pairwise Lennard-Jones functions plus partial charge terms. Intramolecular bond stretching and angle bending are treated with harmonic functions. The new potentials were used to carry out extensive molecular dynamics simulations for each hydrated ion. Computed bond lengths, bond angles and coordination numbers agree well with known values and previous simulations. Hydration free energies, computed from molecular dynamics simulations as well as from quantum simulations with a solvation model, were in reasonable agreement with estimated experimental values.
采用量子力学计算方法,为钍酰离子(AnO2(n+),其中 An = U、Np、Pu、Am,n = 1、2)与水的相互作用开发了分子内和分子间力场参数。采用扩展简单点电荷势(SPC/E)对水进行建模。所得力场采用简单形式,其中分子间相互作用用成对 Lennard-Jones 函数加部分电荷项进行建模。分子内键拉伸和角度弯曲用调和函数处理。新势用于对每个水合离子进行广泛的分子动力学模拟。计算得到的键长、键角和配位数与已知值和以前的模拟吻合较好。从分子动力学模拟以及溶剂化模型的量子模拟中计算得到的水合自由能与估计的实验值相当吻合。