论文标题
li行:水的氢键网络中的局部不对称及其后果
Tumbling with a Limp: Local Asymmetry in Water's Hydrogen Bond Network and its Consequences
论文作者
论文摘要
在平衡环境条件下对液态水的始终分子动力学模拟以及新的能量分解分析,最近表明,大量的水分子比两个供体的优势与/或两个受体相互作用之间表现出显着的不对称性。我们将这一最近揭示的方面称为“氢键网络中的局部不对称”。我们讨论了如何首先揭示这一新颖方面的方式,并提供可以在模拟水轨迹上始终使用的指标来量化氢键网络中的这种局部异质性及其动力学。然后,我们讨论不对称的静态方面,与在任何给定的时间瞬间和其中的氢键强度的分布以及其动态特征有关的液体水的冷冻几何形状以及与这种不对称衰减的速度以及负责此衰减负责的分子运动的速度有关。此后,我们讨论了这种不对称的光谱表现,从超快X射线吸收光谱到红外光谱,再到较慢的Terahertz制度。最后,我们在广泛的背景下讨论了这些发现的含义及其与当前有关液态水结构和动态的概念的关系。
Ab initio molecular dynamics simulations of liquid water under equilibrium ambient conditions, together with a novel energy decomposition analysis, have recently shown that a substantial fraction of water molecules exhibit a significant asymmetry between the strengths of the two donor and/or the two acceptor interactions. We refer to this recently unraveled aspect as the "local asymmetry in the hydrogen bond network". We discuss how this novel aspect was first revealed, and provide metrics that can be consistently employed on simulated water trajectories to quantify this local heterogeneity in the hydrogen bond network and its dynamics. We then discuss the static aspects of the asymmetry, pertaining to the frozen geometry of liquid water at any given instant of time and the distribution of hydrogen bond strengths therein, and also its dynamic characteristics pertaining to how fast this asymmetry decays and the kinds of molecular motions responsible for this decay. Following this we discuss the spectroscopic manifestations of this asymmetry, from ultrafast X-ray absorption spectra to infrared spectroscopy and down to the much slower terahertz regime. Finally, we discuss the implications of these findings in a broad context and its relation to the current notions about the structure and dynamics of liquid water.