Institute for Theoretical Physics II: Soft Matter, Heinrich-Heine-Universität Düsseldorf, 40225 Düsseldorf, Germany.
Soft Matter. 2018 May 23;14(20):4141-4149. doi: 10.1039/c8sm00398j.
Molecular dynamics (MD) computer simulations are used to study the structure of hard-core Yukawa systems confined between two parallel hard walls. States around the coexistence between a fluid and a body-centered cubic (BCC) crystal are considered. In all cases a pronounced layering in the vicinity of the walls is observed. Using a thermodynamic integration scheme, we determine the wall-fluid interfacial free energy γ which is negative and monotonically decreasing with increasing bulk density of the fluid. In the case of the fluid, the layers next to the walls undergo a transition from a fluid to a hexagonal structure. This pre-freezing transition occurs well below the coexistence bulk density of the fluid. The confined BCC crystal in (111) orientation shows melted regions between crystalline face-centered cubic (FCC) layers close to the wall and the BCC bulk region.
分子动力学(MD)计算机模拟用于研究硬芯 Yukawa 体系在两个平行硬壁之间的受限结构。研究了处于流体和体心立方(BCC)晶体共存状态附近的状态。在所有情况下,都观察到壁附近明显的分层。使用热力学积分方案,我们确定了壁-流体界面自由能γ,它是负的,并且随着流体体密度的增加单调减小。对于流体,靠近壁的层经历了从流体到六方结构的转变。这种预冻结转变发生在流体共存体密度以下。(111)取向的受限 BCC 晶体在靠近壁的面心立方(FCC)层和 BCC 体区之间显示出熔融区域。