Mukherjee Biswaroop, Chakrabarti Buddhapriya
Department of Physics and Astronomy, University of Sheffield, Sheffield S3 7RH, UK.
Polymers (Basel). 2020 Jul 16;12(7):1576. doi: 10.3390/polym12071576.
Surface segregation of the low molecular weight component of a polymeric mixture is a ubiquitous phenomenon that leads to degradation of industrial formulations. We report a simultaneous phase separation and surface migration phenomena in oligomer-polymer ( O P ) and oligomer-gel ( O G ) systems following a temperature quench that induces demixing of components. We compute equilibrium and time varying migrant (oligomer) density profiles and wetting layer thickness in these systems using coarse grained molecular dynamics (CGMD) and mesoscale hydrodynamics (MH) simulations. Such multiscale methods quantitatively describe the phenomena over a wide range of length and time scales. We show that surface migration in gel-oligomer systems is significantly reduced on account of network elasticity. Furthermore, the phase separation processes are significantly slowed in gels leading to the modification of the well known Lifshitz-Slyozov-Wagner (LSW) law ℓ ( τ ) ∼ τ 1 / 3 . Our work allows for rational design of polymer/gel-oligomer mixtures with predictable surface segregation characteristics that can be compared against experiments.
聚合物混合物中低分子量组分的表面偏析是一种普遍存在的现象,会导致工业配方的降解。我们报道了在温度骤冷后,低聚物 - 聚合物(OP)和低聚物 - 凝胶(OG)体系中同时出现的相分离和表面迁移现象,这种温度骤冷会引起组分的分层。我们使用粗粒度分子动力学(CGMD)和介观尺度流体动力学(MH)模拟,计算了这些体系中的平衡态和随时间变化的迁移体(低聚物)密度分布以及润湿层厚度。这种多尺度方法在很宽的长度和时间尺度范围内定量地描述了这些现象。我们表明,由于网络弹性,凝胶 - 低聚物体系中的表面迁移显著减少。此外,凝胶中的相分离过程显著减慢,导致著名的 Lifshitz - Slyozov - Wagner(LSW)定律 ℓ ( τ ) ∼ τ 1 / 3 发生改变。我们的工作有助于合理设计具有可预测表面偏析特性的聚合物/凝胶 - 低聚物混合物,这些特性可与实验结果进行比较。