Wu Chaofu
Hunan Provincial Key Laboratory of Fine Ceramics and Powder Materials, School of Materials and Environmental Engineering, Hunan University of Humanities, Science and Technology, Loudi 417000, Hunan, P. R. China.
J Phys Chem B. 2022 Sep 1;126(34):6500-6510. doi: 10.1021/acs.jpcb.2c02627. Epub 2022 Aug 18.
The free-standing thin films of melted poly(ethylene oxide) have been extensively simulated by the chemically specific coarse-grained (CG) molecular dynamics (MD) method. It is revealed that if the polymer thin film becomes thinner than some critical value, it would initially turn into a fiber, accompanied by an increase in the free surface area and a decrease in surface tension. A simple but efficient scheme is proposed to determine the critical interfacial thickness and the film thickness from the non-intrinsic density and pressure profiles, and the ratio of the two thicknesses is defined as the interfacial fraction. The critical film thickness is found to increase with the number of chains or equivalently the transverse area. With increasing temperature, the critical interfacial thickness increases a bit whereas the critical film thickness slightly decreases, highlighting the important role of the interfacial fraction. For both of the "critical" and "thick" films, the outermost surface layers are confirmed to undergo the greatest movements. The "critical" film exhibits the intrinsic interfacial thickness and bulk density almost identical to those of the "thick" film, dictating the thickness independence of the surface tension. Therefore, the phase stability of the film is essentially determined from the intrinsic thickness of the bulk layer, and the identified temperature dependence of the critical film thickness can be mainly explained by the surface tension.
通过化学特异性粗粒化(CG)分子动力学(MD)方法,对熔融聚环氧乙烷的独立薄膜进行了广泛模拟。结果表明,如果聚合物薄膜变得比某个临界值更薄,它最初会变成纤维,同时自由表面积增加,表面张力降低。提出了一种简单而有效的方案,从非本征密度和压力分布确定临界界面厚度和薄膜厚度,并将两者厚度之比定义为界面分数。发现临界薄膜厚度随链数或等效的横向面积增加而增加。随着温度升高,临界界面厚度略有增加,而临界薄膜厚度略有降低,突出了界面分数的重要作用。对于“临界”薄膜和“厚”薄膜,最外层都被证实经历了最大的运动。“临界”薄膜的本征界面厚度和体密度与“厚”薄膜几乎相同,这决定了表面张力与厚度无关。因此,薄膜的相稳定性基本上由体层的本征厚度决定,并且所确定的临界薄膜厚度的温度依赖性主要可以由表面张力来解释。