论文标题
SIO2高密度液体/低密度液体界面的原子表征
Atomistic characterization of the SiO2 high-density liquid/low-density liquid interface
论文作者
论文摘要
使用分子动力学模拟检查了高密度液体(HDL)相之间的平衡二氧化硅液体液体界面和低密度液体(LDL)相。详细的界面区域内的结构,热力学和动力学与先前关于散装二氧化硅液体液相变(LLPT)的研究以及传统的晶体融合界面进行了比较。我们发现,二氧化硅HDL-LDL界面在整个界面上表现出空间易碎到紧身的过渡。动力学属性的计算揭示了二氧化硅HDL-LDL界面内的三种类型的动态异质性杂交。我们还观察到,随着界面从HDL到LDL遍历,Si/O配位数比率跳至出乎意料的大值,定义了界面的薄区域,其中HDL和LDL表现出明显的混合。此外,LLPT相共存是在合金和相位平衡的传统热力学框架中解释的。
The equilibrium silica liquid-liquid interface between the high-density liquid (HDL) phase and the low-density liquid (LDL) phase is examined using molecular-dynamics simulation. The structure, thermodynamics, and dynamics within the interfacial region are characterized in detail and compared with previous studies on the liquid-liquid phase transition (LLPT) in bulk silica, as well as traditional crystal-melt interfaces. We find that the silica HDL-LDL interface exhibits a spatial fragile-to-strong transition across the interface. Calculations of dynamics properties reveal three types of dynamical heterogeneity hybridizing within the silica HDL-LDL interface. We also observe that as the interface is traversed from HDL to LDL, the Si/O coordination number ratio jumps to an unexpectedly large value, defining a thin region of the interface where HDL and LDL exhibit significant mixing. In addition, the LLPT phase coexistence is interpreted in the framework of the traditional thermodynamics of alloys and phase equilibria.