Urbic Tomaz, Dill Ken A
University of Ljubljana, Faculty of Chemistry and Chemical Technology, Večna pot 113, SI-1000 Ljubljana, Slovenia.
Laufer Center for Physical and Quantitative Biology, Stony Brook University, Stony Brook, New York 11794-5252, USA.
Phys Rev E. 2018 Sep;98(3). doi: 10.1103/physreve.98.032116. Epub 2018 Sep 11.
We investigate by Monte Carlo simulations density, diffusion, and structural anomalies of the simple two-dimensional Mercedes-Benz (MB) model of water, which is a very simple toy model for explaining the origin of water properties. MB water molecules are modeled as two-dimensional Lennard-Jones disks, with three orientation-dependent hydrogen-bonding arms, arranged as in the MB logo. The model is in a way also a variance of silica-like models. Beside the known thermodynamic anomaly for the model we also found diffusion and structural anomalies and map out the cascade of density, structural, pair entropy, and diffusivity anomalies for MB model. The orientational order parameters with three and six-fold symmetry were determined and maximum for each one observed. The anomalies occur in hierarchy order, which is a slight variation of the hierarchy order in real water. The diffusion anomaly region is the innermost in the hierarchy while for water it is the density anomaly region.
我们通过蒙特卡罗模拟研究了简单二维梅赛德斯 - 奔驰(MB)水模型的密度、扩散和结构异常,该模型是用于解释水性质起源的非常简单的玩具模型。MB水分子被建模为二维伦纳德 - 琼斯圆盘,带有三个与取向有关的氢键臂,其排列方式如同MB标志。该模型在某种程度上也是类二氧化硅模型的变体。除了该模型已知的热力学异常外,我们还发现了扩散和结构异常,并描绘出了MB模型的密度、结构、对熵和扩散率异常的级联情况。确定了具有三重和六重对称性的取向序参数,并观察到每个参数的最大值。这些异常按层次顺序出现,这与真实水中的层次顺序略有不同。扩散异常区域在层次结构中是最内层的,而对于水来说,密度异常区域是最内层的。