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首页> 外文期刊>The European physical journal, E. Soft matter >Melting of polymer single crystals studied by dynamic Monte Carlo simulations
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Melting of polymer single crystals studied by dynamic Monte Carlo simulations

机译:动态蒙特卡洛模拟研究聚合物单晶的熔融

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We report dynamic Monte Carlo simulations of lattice polymers melting from a metastable chain-folded lamellar single crystal. The single crystal was raised and then melted in an ultrathin film of polymers wetting on a solid substrate, mimicking the melting observations made by using Atomic Force Microscopy. We observed that the thickness distribution of the single crystal appears quite inhomogeneous and the thickness increases gradually from facetted edges to the center. Therefore, at low melting temperatures, melting stops at a certain crystal thickness, and melting-recrystallization occurs when allowing crystal thickening; at intermediate temperatures, melting maintains the crystal shape and exhibits different speeds in two stages; at high temperatures, fast melting makes a melting hole in the thinnest region, as well as a saw-tooth-like pattern at the crystal edges. In addition, the linear melting rates at low temperatures align on the curve extrapolated from the linear crystal growth rates. The temperature dependence of the melting rates exhibits a regime transition similar to crystal growth. Such kinetic symmetry persists in the melting rates with variable frictional barriers for c -slip diffusion in the crystal as well as with variable chain lengths. Visual inspections revealed highly frequent reversals upon melting of single chains at the wedge-shaped lateral front of the lamellar crystal. We concluded that the melting kinetics is dominated by the reverse process of intramolecular secondary crystal nucleation of polymers.
机译:我们报告了从亚稳态链折叠层状单晶熔化的晶格聚合物的动态蒙特卡洛模拟。提起单晶,然后在润湿于固体基质上的聚合物超薄膜中熔化,这类似于使用原子力显微镜所做的熔化观察。我们观察到,单晶的厚度分布看起来非常不均匀,并且厚度从多面边缘到中心逐渐增加。因此,在较低的熔融温度下,熔融停止在一定的晶体厚度,并且当允许晶体增厚时发生熔融-再结晶。在中等温度下,熔化可保持晶体形状,并在两个阶段显示出不同的速度。在高温下,快速熔化会在最薄的区域形成一个熔化孔,并在晶体边缘形成锯齿状的图案。另外,低温下的线性熔化速率与从线性晶体生长速率推断出的曲线一致。熔点的温度依赖性表现出类似于晶体生长的状态转变。这样的动力学对称性在熔化速率中持续存在,并且对于晶体中的c-滑移扩散具有可变的摩擦势垒以及具有可变的链长。目视检查显示,单层链在层状晶体的楔形侧面前端融化后,频繁发生反转。我们得出的结论是,熔融动力学受聚合物分子内二级晶体成核的逆过程支配。

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