Kumar Pradeep, Han Sungho, Stanley H Eugene
Center for Studies in Physics and Biology, Rockefeller University, 1230 York Avenue, New York, NY 10021, USA.
J Phys Condens Matter. 2009 Dec 16;21(50):504108. doi: 10.1088/0953-8984/21/50/504108. Epub 2009 Nov 23.
Using molecular dynamic (MD) simulations of the TIP5P model of water, we investigate the effect of hydrophobic confinement on the anomalies of liquid water. For confinement length Lz = 1.1 nm, such that there are 2-3 molecular layers of water, we find the presence of the bulk-like density and diffusion anomaly in the lateral directions. However, the lines of these anomalies in the P-T plane are shifted to lower temperatures (ΔT≈40 K) and pressures compared to bulk water. Furthermore, we introduce a method to calculate the effective diffusion constant along the confinement direction and find that the diffusion anomaly is absent. Moreover, we investigate the hydrogen bond dynamics of confined water and find that the hydrogen bond dynamics preserves the characteristics of HB dynamics in bulk water, such as a non-exponential behavior followed by an exponential tail of HB lifetime probability distributions and an Arrhenius temperature dependence of the average HB lifetime. The average number and lifetime of HBs decrease in confined water compared to bulk water at the same temperature. This reduction may be the origin of the reasons for the different physical properties of confined water from bulk water, such as the 40 K temperature shift.
利用水的TIP5P模型的分子动力学(MD)模拟,我们研究了疏水限制对液态水异常现象的影响。对于限制长度Lz = 1.1纳米,使得存在2 - 3个水分子层,我们发现在横向方向上存在类似本体的密度和扩散异常。然而,与本体水相比,这些异常在P - T平面上的线移向了更低的温度(ΔT≈40 K)和压力。此外,我们引入了一种计算沿限制方向有效扩散常数的方法,发现不存在扩散异常。而且,我们研究了受限水的氢键动力学,发现氢键动力学保留了本体水中氢键动力学的特征,例如氢键寿命概率分布的非指数行为随后是指数尾部,以及平均氢键寿命的阿伦尼乌斯温度依赖性。与相同温度下的本体水相比,受限水中氢键的平均数量和寿命减少。这种减少可能是受限水与本体水物理性质不同的原因之一,比如40 K的温度偏移。