论文标题
限制下水的异常介电特性的结构和动力学指纹
Structural and Dynamical Fingerprints of the Anomalous Dielectric Properties of Water Under Confinement
论文作者
论文摘要
关于固体表面邻近的界面水分子的分子构型,尤其是在电化学和生物学中起着至关重要的作用,存在一个长期存在的问题。在这项研究中,已使用分子动力学研究了在不同的距离尺度上的不同距离之间,在不同的相互距离之间,在不同的相互距离之间放置了两个平行石墨烯壁之间的介电,结构和动力学特性。对于水的介电特性,我们表明水介电常数的垂直成分在$ 2 \下大大降低; nm $空间限制。通过线性响应和波动隔离理论所达到的介电恒定数据与最近报道的实验结果一致。通过确定原子数量的电荷密度以及波动,我们为垂直介电响应函数的行为提供了分子原理。我们还根据存在悬空的水域键来解释介电响应的行为。通过检查限制下的水的停留时间和横向扩散常数,我们揭示了水分子倾向于将其氢键网络保持在水 - 印刷的界面处。我们还发现,系统质量中心的横向扩散与Z组分之间的一致性是限制的函数。
There is a long-standing question about the molecular configuration of interfacial water molecules in the proximity of solid surfaces, particularly carbon atoms which play a crucial role in electrochemistry and biology. In this study, the dielectric, structural and dynamical properties of confined water placed between two parallel graphene walls at different inter distances from the Angstrom scale to few tens of nanometer have been investigated using molecular dynamics. For dielectric properties of water, we show that the perpendicular component of water dielectric constant drastically decreases under sub $2\; nm$ spatial confinement. The achieved dielectric constant data through linear response and fluctuation-dissipation theory, are consistent with recent reported experimental results. By determining the charge density as well as fluctuations in the number of atoms, we provide a molecular rationale for the behavior of perpendicular dielectric response function. We also interpret the behavior of the dielectric response in terms of the presence of dangling O-H bonds of waters. By examining the residence time and lateral diffusion constant of water under confinement, we reveal that the water molecules tend to keep their hydrogen bond networks at the interface of water-graphene. We also found consistency between lateral diffusion and z-component of variance in the center of mass of the system as a function of confinement.