Ogrin Peter, Urbic Tomaz
Faculty of Chemistry and Chemical Technology, University of Ljubljana, Vecna Pot 113, SI-1000 Ljubljana, Slovenia.
J Chem Phys. 2023 Sep 21;159(11). doi: 10.1063/5.0159438.
Orientation-dependent integral equation theory (ODIET) was applied to the rose water model. Structural and thermodynamic properties of water modeled with the rose model were calculated using ODIET and compared to results from orientation-averaged integral equation theory (IET) and Monte Carlo simulations. Rose water model is a simple two-dimensional water model where molecules of water are represented as Lennard-Jones disks with explicit hydrogen bonding potential in form of rose functions. Orientational dependency significantly improves IET, as the thermodynamic results obtained using ODIET are significantly more in agreement with results calculated using MC than in the case of the orientationally averaged version. At high temperatures, the agreement between the simulation and theory is quantitative; however, when temperatures lower, a slight deviation between results obtained with different methods appear. ODIET correctly predicts the radial distribution function; moreover, ODIet also enables the calculation of angular distributions. While the angular distributions obtained with ODIET are in qualitative agreement with distributions from MC simulations, the height of the peaks in angular distributions differs between methods. Using results from ODIET, the spatial distribution of water molecules was constructed, which aids in the interpretation of other structural properties. ODIET was also used to calculate fractions of molecules with different number of hydrogen bonds, which is in the agreement with the simulations. Overall, use of ODIET significantly improves the obtained results in comparison to standard IET.
将取向相关积分方程理论(ODIET)应用于玫瑰水模型。使用ODIET计算了用玫瑰模型建模的水的结构和热力学性质,并与取向平均积分方程理论(IET)和蒙特卡罗模拟的结果进行了比较。玫瑰水模型是一种简单的二维水模型,其中水分子被表示为具有玫瑰函数形式的明确氢键势的 Lennard-Jones 圆盘。取向依赖性显著改进了 IET,因为使用 ODIET 获得的热力学结果与使用 MC 计算的结果相比,比取向平均版本的情况更吻合。在高温下,模拟与理论之间的一致性是定量的;然而,当温度较低时,不同方法获得的结果之间会出现轻微偏差。ODIET 正确地预测了径向分布函数;此外,ODIet 还能够计算角分布。虽然用 ODIET 获得的角分布与 MC 模拟的分布在定性上一致,但角分布中峰值的高度在不同方法之间有所不同。利用 ODIET 的结果构建了水分子的空间分布,这有助于解释其他结构性质。ODIET 还用于计算具有不同氢键数的分子分数,这与模拟结果一致。总体而言,与标准 IET 相比,使用 ODIET 显著改善了所得结果。