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单层方冰的结构和动力学特性。

Structural and dynamic characteristics in monolayer square ice.

机构信息

CAS Key Laboratory of Mechanical Behavior and Design of Materials, Department of Modern Mechanics, CAS Center for Excellence in Nanoscience, University of Science and Technology of China, Hefei, Anhui 230027, China.

出版信息

J Chem Phys. 2017 Jul 28;147(4):044706. doi: 10.1063/1.4995432.

Abstract

When water is constrained between two sheets of graphene, it becomes an intriguing monolayer solid with a square pattern due to the ultrahigh van der Waals pressure. However, the square ice phase has become a matter of debate due to the insufficient experimental interpretation and the slightly rhomboidal feature in simulated monolayer square-like structures. Here, we performed classical molecular dynamics simulations to reveal monolayer square ice in graphene nanocapillaries from the perspective of structure and dynamic characteristics. Monolayer square-like ice (instantaneous snapshot), assembled square-rhombic units with stacking faults, is a long-range ordered structure, in which the square and rhombic units are assembled in an order of alternative distribution, and the other rhombic unit forms stacking faults (polarized water chains). Spontaneous flipping of water molecules in monolayer square-like ice is intrinsic and induces transformations among different elementary units, resulting in the structural evolution of monolayer square ice in dynamics. The existence of stacking faults should be attributed to the spontaneous flipping behavior of water molecules under ambient temperature. Statistical averaging results (thermal average positions) demonstrate the inherent square characteristic of monolayer square ice. The simulated data and insight obtained here might be significant for understanding the topological structure and dynamic behavior of monolayer square ice.

摘要

当水被限制在两片石墨烯之间时,由于超高的范德华压力,它会变成一种具有正方形图案的有趣单层固体。然而,由于实验解释不足以及模拟单层类似正方形结构中略微的菱形特征,这种正方形冰相一直存在争议。在这里,我们通过经典分子动力学模拟,从结构和动态特性的角度揭示了石墨烯纳米管中的单层正方形冰。单层类似正方形冰(瞬时快照),由具有堆积缺陷的组装正方形-菱形单元组成,是一种长程有序结构,其中正方形和菱形单元以交替分布的顺序组装,而其他菱形单元形成堆积缺陷(极化水分子链)。单层类似正方形冰中的水分子自发翻转是固有现象,并诱导不同基本单元之间的转变,从而导致单层正方形冰在动力学中的结构演变。堆积缺陷的存在归因于水分子在环境温度下的自发翻转行为。统计平均结果(热平均位置)表明了单层正方形冰固有的正方形特征。这里获得的模拟数据和见解可能对理解单层正方形冰的拓扑结构和动态行为具有重要意义。

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