...
首页> 外文期刊>The Journal of Chemical Physics >Extending the fused-sphere SAFT-gamma Mie force field parameterization approach to poly(vinyl butyral) copolymers
【24h】

Extending the fused-sphere SAFT-gamma Mie force field parameterization approach to poly(vinyl butyral) copolymers

机译:延伸熔融球Saft-Gamma Mie力场参数化方法以聚(乙烯基缩丁醛)共聚物

获取原文
获取原文并翻译 | 示例
           

摘要

SAFT-gamma Mie, a molecular group-contribution equation of state with foundations in the statistical associating fluid theory framework, is a promising means for developing accurate and transferable coarse-grained force fields for complex polymer systems. We recently presented a new approach for incorporating bonded potentials derived from all-atom molecular dynamics simulations into fused-sphere SAFT-gamma Mie homopolymer chains by means of a shape factor parameter, which allows for bond distances less than the tangent-sphere value required in conventional SAFT-gamma Mie force fields. In this study, we explore the application of the fused-sphere SAFT-gamma Mie approach to copolymers. In particular, we demonstrate its capabilities at modeling poly(vinyl alcohol-co-vinyl butyral) (PVB), an important commercial copolymer widely used as an interlayer in laminated safety glass applications. We found that shape factors determined from poly(vinyl alcohol) and poly(vinyl butyral) homopolymers do not in general correctly reproduce random copolymer densities when standard SAFT-gamma Mie mixing rules are applied. However, shape factors optimized to reproduce the density of a random copolymer of intermediate composition resulted in a model that accurately represents density across a wide range of chemical compositions. Our PVB model reproduced copolymer glass transition temperature in agreement with experimental data, but heat capacity was underpredicted. Finally, we demonstrate that atomistic details may be inserted into equilibrated fused-sphere SAFT-gamma Mie copolymer melts through a geometric reverse-mapping algorithm.
机译:SAFT-GAMMA MIE是统计关联流体理论框架中的基础的分子组贡献方程,是用于为复合聚合物系统发育精确可转移的粗粒力场的有希望的装置。我们最近介绍了一种新的方法,将粘合潜力纳入熔合球Saft-Gamma Mie均聚参数的熔合球,其允许粘合距离小于所需的切线值传统的SAFT-GAMMA MIE力田。在这项研究中,我们探讨了融合球Saft-Gamma Mie方法对共聚物的应用。特别是,我们证明了其在造型聚(乙烯醇 - 共乙烯基缩丁醛)(PVB)的能力,这是一种广泛用作层压安全玻璃应用中的中间层的重要的商业共聚物。我们发现,当施加标准Saft-gamma mie混合规则时,由聚(乙烯醇)和聚(乙烯基醇)和聚(乙烯基丁醛)均聚物确定的形状因子通常不正确再现无规共聚物密度。然而,优化的形状因子以再现中间组合物的随机共聚物的密度导致了一种精确地表示各种化学组合物的密度的模型。我们的PVB模型与实验数据一致的复制共聚物玻璃化转变温度,但热容量不足。最后,我们证明了通过几何反向映射算法将原子细节插入平衡的熔融球Saff-Gamma Mie共聚物中。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号