Chatterjee Swaroop, Debenedetti Pablo G, Stillinger Frank H, Lynden-Bell Ruth M
Department of Chemical Engineering, Princeton University, Princeton, New Jersey 08544, USA.
J Chem Phys. 2008 Mar 28;128(12):124511. doi: 10.1063/1.2841127.
We investigate the properties of geometrically modified water models by performing molecular dynamics simulations of perturbations of the extended simple point charge (SPC/E) model of water over a wide range of temperatures at 1 bar. The geometric modification consists of altering the H-O-H angle in SPC/E. The dipole moment is held constant by altering the O-H bond length, while the electrostatic charges are left unchanged. We find that a H-O-H angle of at least 100 degrees is necessary for the appearance of density anomalies and of solubility extrema with respect to temperature for small apolar solutes. We observe the occurrence of two incompatible types of structural order in these models: Tetrahedral, with waterlike translational order for bent models with H-O-H angles in excess of 100 degrees ; and linear, with Lennard-Jones-like orientationally averaged translational order for smaller H-O-H angles. Increasing the H-O-H angle causes the density to increase, while at the same time shifting waterlike anomalies to progressively higher temperatures. For bent models with H-O-H angle greater than SPC/E's, we observe arrest of translational motion at 300 K (115 degrees) and 330 K (120 degrees).
我们通过在1巴的广泛温度范围内对水的扩展简单点电荷(SPC/E)模型的扰动进行分子动力学模拟,研究了几何修饰水模型的性质。几何修饰包括改变SPC/E中的H-O-H角。通过改变O-H键长使偶极矩保持恒定,而静电荷保持不变。我们发现,对于小的非极性溶质,至少100度的H-O-H角对于密度异常和溶解度极值随温度的出现是必要的。我们观察到这些模型中出现了两种不相容的结构有序类型:对于H-O-H角超过100度的弯曲模型,呈四面体结构,具有类似水的平移有序;对于较小的H-O-H角,呈线性结构,具有类似 Lennard-Jones 的取向平均平移有序。增加H-O-H角会导致密度增加,同时将类似水的异常现象逐渐转移到更高的温度。对于H-O-H角大于SPC/E的弯曲模型,我们观察到在300 K(115度)和330 K(120度)时平移运动停止。