Vácha Robert, Megyes Tunde, Bakó Imre, Pusztai László, Jungwirth Pavel
Institute of Organic Chemistry and Biochemistry, Academy of Sciences of the Czech Republic and Center for Biomolecules and Complex Molecular Systems, Flemingovo nm. 2, 16610 Prague 6, Czech Republic.
J Phys Chem A. 2009 Apr 23;113(16):4022-7. doi: 10.1021/jp810399p.
Results from molecular dynamics simulations of aqueous hydroxide of varying concentrations have been compared with experimental structural data. First, the polarizable POL3 model was verified against neutron scattering using a reverse Monte Carlo fitting procedure. It was found to be competitive with other simple water models and well suited for combining with hydroxide ions. Second, a set of four polarizable models of OH- were developed by fitting against accurate ab initio calculations for small hydroxide-water clusters. All of these models were found to provide similar results that robustly agree with structural data from X-ray scattering. The present force field thus represents a significant improvement over previously tested nonpolarizable potentials. Although it cannot in principle capture proton hopping and can only approximately describe the charge delocalization within the immediate solvent shell around OH-, it provides structural data that are almost entirely consistent with data obtained from scattering experiments.
已将不同浓度氢氧化水溶液的分子动力学模拟结果与实验结构数据进行了比较。首先,使用反向蒙特卡罗拟合程序,根据中子散射对可极化的POL3模型进行了验证。发现它与其他简单水模型具有竞争力,非常适合与氢氧根离子结合。其次,通过对小的氢氧化-水团簇的精确从头算进行拟合,开发了一组四个可极化的OH-模型。发现所有这些模型都提供了与X射线散射的结构数据高度一致的相似结果。因此,目前的力场相对于先前测试的不可极化势有了显著改进。尽管原则上它无法捕捉质子跳跃,只能近似描述OH-周围紧邻溶剂壳层内的电荷离域,但它提供的结构数据几乎与散射实验获得的数据完全一致。