首页> 外文OA文献 >SAFT-γforce field for the simulation of molecular fluids: 3. Coarse-grained models of benzene and hetero-group models ofn-decylbenzene
【2h】

SAFT-γforce field for the simulation of molecular fluids: 3. Coarse-grained models of benzene and hetero-group models ofn-decylbenzene

机译:用于分子流体模拟的saFT-γ力场:3。正癸基苯的苯和杂基团模型的粗粒度模型

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

In the first paper of this series [C. Avendao, T. Lafitte, A. Galindo, C.S. Adjiman, G. Jackson, and E.A. Mller, J. Phys. Chem. B 115, 11154 (2011)] our methodology for the development of accurate coarse-grained (CG) SAFT-force fields for the computer simulation of molecular fluids was introduced with carbon dioxide as a particular case study. The procedure involves the use of a molecular-based equation of state to obtain effective intermolecular parameters (from experimental fluid phase equilibrium data) appropriate for molecular simulation over a wide range of fluid conditions. We now extend the methodology to develop coarse-grained models for benzene (C6 H6) that can be used in fluid phase simulations. Our SAFT-CG force fields for benzene consist of a simple single-segment spherical model, and a rigid three-segment ring structure of tangent spherical groups interacting via Mie (generalized Lennard-Jones) segment-segment interactions. The description of the fluid phase behaviour of benzene with our simplified CG force fields is found to be comparable to that obtained with the more sophisticated models commonly used in the field; a marked improvement is seen with our SAFT-models for the vapour pressure, particularly at lower temperatures. These models of benzene together with the previously developed SAFT-three-segment chain model of n-decane are used to develop hetero-group force fields for n-decylbenzene, in the spirit of a group contribution methodology. In our approach, the parameters of the phenyl and n-decyl groups are obtained transferably from the individual models of benzene and n-decane, respectively, and the unlike energetic parameters between the phenyl and decyl segments can be obtained from vapour-liquid equilibria data for n-decylbenzene using the SAFT-equation of state. The resulting CG hetero-group models are found to describe the fluid properties of n-decylbenzene over a wide range of conditions, exemplifying how our approach can be used as a group contribution methodology. This is the first example of the development of hetero-group SAFT-force fields for molecules formed from Mie segments of different size, energy, softness/hardness, and range. © 2012 Taylor & Francis.
机译:在本系列的第一个论文中[C. Avendao,T. Lafitte,A. Galindo,C.S.Jejiman,G. Jackson和E.A. Mller,J. Phy。化学。 B 115,1154(2011)]我们为特定情况研究引入了用于计算机模拟的计算机模拟的精确粗颗粒(CG)Saft-Force田地的方法。用二氧化碳作为特定情况研究。该方法涉及使用基于分子的状态方程,以获得适合于在各种流体条件下进行分子模拟的有效分子间参数(来自实验流体相平衡数据)。我们现在扩展方法,以开发可用于流体相位模拟的苯(C6 H6)的粗粒模型。我们的SAFT-CG Force Force for Benzene的苯组包括简单的单段球形模型,以及通过MIE(广义Lennard-Jones)段段相互作用的切线球组的刚性三段环结构。发现苯的流体相行为与我们的简化CG力场的流体相行为相当于与该领域常用的更复杂模型获得的相当;我们的Saft-Models用于蒸汽压力,特别是在较低温度下,可以看到显着的改善。这些苯与先前开发的N-癸烷的SAFT-T3段链模型一起用于开发N-癸基苯的异组力场,本着群体贡献方法的精神。在我们的方法中,苯基和正癸基的参数分别可分别从苯和N-癸烷的各个模型可转移地获得,并且可以从汽液平衡数据中获得苯基和癸段之间的能量参数对于使用状态的Saft方程的N-癸苯。得到得到的CG杂组模型在广泛的条件下描述了N-癸苯的流体性质,示出了我们的方法可以用作组贡献方法。这是由不同尺寸,能量,柔软度/硬度和范围形成的MIE段形成的分子杂族Saft-Force田的第一个例子。 ©2012 Taylor&Francis。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

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