Zhou Yang, Lopez Gustavo E, Giovambattista Nicolas
Department of Physics, Brooklyn College of the City University of New York, Brooklyn, New York 11210, USA.
Department of Chemistry, Lehman College of the City University of New York, Bronx, New York 10468, USA.
J Chem Phys. 2022 Sep 28;157(12):124502. doi: 10.1063/5.0106923.
As a liquid approaches the gas state, the properties of the potential energy landscape (PEL) sampled by the system become anomalous. Specifically, (i) the mechanically stable local minima of the PEL [inherent structures (IS)] can exhibit cavitation above the so-called Sastry volume, v, before the liquid enters the gas phase. In addition, (ii) the pressure of the liquid at the sampled IS [i.e., the PEL equation of state, P(v)] develops a spinodal-like minimum at v. We perform molecular dynamics simulations of a monatomic water-like liquid and verify that points (i) and (ii) hold at high temperatures. However, at low temperatures, cavitation in the liquid and the corresponding IS occurs simultaneously and a Sastry volume cannot be defined. Remarkably, at intermediate/high temperatures, the IS of the liquid can exhibit crystallization, i.e., the liquid regularly visits the regions of the PEL that belong to the crystal state. The model liquid considered also exhibits a liquid-liquid phase transition (LLPT) between a low-density and a high-density liquid (LDL and HDL). By studying the behavior of P(v) during the LLPT, we identify a Sastry volume for both LDL and HDL. The HDL Sastry volume marks the onset above which IS are heterogeneous (composed of LDL and HDL particles), analogous to points (i) and (ii) above. However, the relationship between the LDL Sastry volume and the onset of heterogeneous IS is less evident. We conclude by presenting a thermodynamic argument that can explain the behavior of the PEL equation of state P(v) across both the liquid-gas phase transition and LLPT.
当一种液体接近气态时,系统所采样的势能景观(PEL)的性质会变得异常。具体而言,(i)在液体进入气相之前,PEL的机械稳定局部最小值(固有结构,IS)在所谓的萨斯特里体积v之上会出现空化现象。此外,(ii)在采样的IS处液体的压力[即PEL状态方程,P(v)]在v处会出现类似旋节线的最小值。我们对一种单原子类水液体进行了分子动力学模拟,并验证了在高温下(i)和(ii)点成立。然而,在低温下,液体中的空化现象和相应的IS会同时出现,并且无法定义萨斯特里体积。值得注意的是,在中/高温下,液体的IS会出现结晶现象,即液体经常访问PEL中属于晶体状态的区域。所考虑的模型液体还表现出低密度液体和高密度液体(LDL和HDL)之间的液-液相转变(LLPT)。通过研究LLPT过程中P(v)的行为,我们为LDL和HDL都确定了一个萨斯特里体积。HDL的萨斯特里体积标志着IS变得不均匀(由LDL和HDL颗粒组成)的起始点,类似于上述的(i)和(ii)点。然而,LDL的萨斯特里体积与不均匀IS起始点之间的关系不太明显。我们通过提出一个热力学观点来结束本文,该观点可以解释PEL状态方程P(v)在液-气相转变和LLPT过程中的行为。