Plašienka Dušan, Cifra Peter, Martoňák Roman
Department of Experimental Physics, Comenius University, Mlynská Dolina F2, 842 48 Bratislava, Slovakia.
Polymer Institute, Slovak Academy of Sciences, Dúbravská cesta 9, 845 41 Bratislava, Slovakia.
J Chem Phys. 2015 Apr 21;142(15):154502. doi: 10.1063/1.4917040.
We present results of ab initio molecular dynamics study of the structural transformation occurring in hot liquid sulfur under high pressure, which corresponds to the recently observed chain-breakage phenomenon and to the electronic transition reported earlier. The transformation is temperature-induced and separates two distinct polymeric forms of liquid sulfur: high-temperature form composed of short chain-like fragments with open endings and low-temperature form with very long chains. We offer a structural description of the two liquid forms in terms of chain lengths, cross-linking, and chain geometry and investigate several physical properties. We conclude that the transformation is accompanied by changes in energy (but not density) as well as in diffusion coefficient and electronic properties—semiconductor-metal transition. We also describe the analogy of the investigated process to similar phenomena that take place in two other chalcogens selenium and tellurium. Finally, we remark that the behavior of heated liquid sulfur at ambient pressure might indicate a possible existence of a critical point in the low-pressure region of sulfur phase diagram.
我们展示了对高压下热液态硫中发生的结构转变进行的从头算分子动力学研究结果,该转变与最近观察到的链断裂现象以及先前报道的电子跃迁相对应。这种转变是由温度引起的,它将液态硫的两种不同聚合形式区分开来:由具有开放末端的短链状片段组成的高温形式和具有非常长链的低温形式。我们从链长、交联和链几何结构方面对这两种液态形式进行了结构描述,并研究了几种物理性质。我们得出结论,这种转变伴随着能量(但不是密度)以及扩散系数和电子性质的变化——半导体-金属转变。我们还描述了所研究的过程与另外两种硫族元素硒和碲中发生的类似现象的类比。最后,我们指出,常压下加热液态硫的行为可能表明硫相图低压区域中可能存在一个临界点。