材料科学
正交晶系
聚合物
四方晶系
结晶度
微晶
分子动力学
热力学
结晶学
晶体结构
计算化学
物理
复合材料
化学
冶金
作者
Julien Morthomas,Claudio Fusco,Zengqiang Zhai,Olivier Lame,Michel Perez
出处
期刊:Physical review
[American Physical Society]
日期:2017-11-27
卷期号:96 (5)
被引量:32
标识
DOI:10.1103/physreve.96.052502
摘要
The ability of a simple coarse-grained finite-extensible nonlinear elastic (FENE) Lennard-Jones (LJ) polymer model to be crystallized is investigated by molecular dynamics simulations. The optimal FENE Lennard-Jones parameter combinations (ratio between FENE and LJ equilibrium distances) and the optimal lattice parameters are calculated for five different perfect crystallite structures: simple tetragonal, body-centered tetragonal, body-centered orthorhombic, hexagonal primitive, and hexagonal close packed. It was found that the most energetically favorable structure is the body-centered orthorhombic. Starting with an equilibrated polymer liquid and with the optimal parameters found for the body-centered orthorhombic, an isothermal treatment led to the formation of large lamellar crystallites with a typical chain topology: folded, loop, and tie chains, and with a crystallinity of about 60%--70%, similar to real semicrystalline polymers. This simple coarse-grained Lennard-Jones model provides a qualitative tool to study semicrystalline microstructures for polymers.
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