Loubet Nicolás A, Verde Alejandro R, Lockhart Jano A, Appignanesi Gustavo A
INQUISUR, Departamento de Química, Universidad Nacional del Sur (UNS)-CONICET, Avenida Alem 1253, 8000 Bahía Blanca, Argentina.
J Chem Phys. 2023 Aug 14;159(6). doi: 10.1063/5.0159060.
Recent studies have provided conclusive evidence for the existence of a liquid-liquid critical point in numerical models of water. Such a scenario implies the competition between two local molecular arrangements of different densities: a high-density liquid (HDL) and a low-density liquid (LDL). Within this context, the development of accurate structural indicators to properly characterize the two interconverting local structures is demanded. In a previous study, we introduced a reliable energy-based structural descriptor that properly discriminates water molecules into tetrahedrally arranged molecules (T molecules) and distorted molecules (D molecules). The latter constitute defects in terms of hydrogen bond (HB) coordination and have been shown to represent a minority component, even at high temperatures above the melting point. In addition, the D molecules tend to form high-quality HBs with three T molecules and to be surrounded by T and D molecules at further distances. Thus, it became evident that, while the LDL state might consist of a virtually pure T state, the HDL state would comprise mixed molecular arrangements including the D molecules. Such a need to abandon the single-molecule description requires the investigation of the degree of structural information to be incorporated in order to build an appropriate multi-molecule indicator. Hence, in this work, we shall study the effect of the local structural constraints on the water molecules in order to discriminate the different molecular arrangements into two disjoint classes. This will enable us to build a multi-molecule structural indicator for water whose performance will then be investigated within the water's supercooled regime.
最近的研究为水的数值模型中存在液-液临界点提供了确凿证据。这种情况意味着两种不同密度的局部分子排列之间的竞争:高密度液体(HDL)和低密度液体(LDL)。在此背景下,需要开发准确的结构指标来恰当地表征这两种相互转化的局部结构。在之前的一项研究中,我们引入了一种可靠的基于能量的结构描述符,它能将水分子恰当地区分为四面体排列的分子(T分子)和扭曲分子(D分子)。后者在氢键(HB)配位方面构成缺陷,并且已被证明即使在熔点以上的高温下也代表少数成分。此外,D分子倾向于与三个T分子形成高质量的氢键,并在更远的距离被T分子和D分子包围。因此,很明显,虽然LDL状态可能几乎由纯T状态组成,但HDL状态将包括包含D分子的混合分子排列。这种放弃单分子描述的需求需要研究为构建合适的多分子指标而纳入的结构信息程度。因此,在这项工作中,我们将研究局部结构约束对水分子的影响,以便将不同的分子排列区分为两个不相交的类别。这将使我们能够构建一个用于水的多分子结构指标,然后在水的过冷状态下研究其性能。