首页> 外文期刊>The Journal of Chemical Physics >Accurate effective pair potentials for polymer solutions
【24h】

Accurate effective pair potentials for polymer solutions

机译:聚合物溶液的准确有效对电位

获取原文
获取原文并翻译 | 示例
           

摘要

Dilute or semidilute solutions of nonintersecting self-avoiding walk (SAW) polymer chains are mapped onto a fluid of "soft" particles interacting via an effective pair potential between their centers of mass. This mapping is achieved by inverting the pair distribution function of the centers of mass of the original polymer chains, using integral equation techniques from the theory of simple fluids. The resulting effective pair potential is finite at all distances, has a range of the order of the radius of gyration, and turns out to be only moderately concentration-dependent. The dependence of the effective potential on polymer length is analyzed in an effort to extract the scaling limit. The effective potential is used to derive the osmotic equation of state, which is compared to simulation data for the full SAW segment model, and to the predictions of renormalization group calculations. A similar inversion procedure is used to derive an effective wall-polymer potential from the center of mass density profiles near the wall, obtained from simulations of the full polymer segment model. The resulting wall-polymer potential turns out to depend strongly on bulk polymer concentration when polymer-polymer correlations are taken into account, leading to a considerable enhancement of the effective repulsion with increasing concentration. The effective polymer-polymer and wall-polymer potentials are combined to calculate the depletion interaction induced by SAW polymers between two walls. The calculated depletion interaction agrees well with the "exact" results from much more computer-intensive direct simulation of the full polymer-segment model, and clearly illustrates the inadequacy-in the semidilute regime-of the standard Asakura-Oosawa approximation based on the assumption of noninteracting polymer coils. (C) 2001 American Institute of Physics. [References: 82]
机译:不相交的自回避步态(SAW)聚合物链的稀溶液或半稀溶液被映射到“软”颗粒的流体上,该流体通过其质心之间的有效对电位相互作用。这种映射是通过使用简单流体理论中的积分方程技术,通过反转原始聚合物链的质心的成对分布函数来实现的。所产生的有效对电势在所有距离上都是有限的,具有回转半径的数量级,并且证明仅是中等浓度依赖性的。分析了有效电势对聚合物长度的依赖性,以试图得出结垢极限。有效势用于导出状态渗透方程,并将其与完整SAW段模型的模拟数据进行比较,并与重归一化组计算的预测进行比较。使用类似的反演程序可从壁附近的质量密度分布的中心导出有效的壁聚合物电势,该势是通过对整个聚合物链段模型进行仿真而获得的。当考虑到聚合物-聚合物的相关性时,所得的壁-聚合物电势在很大程度上取决于本体聚合物的浓度,导致随着浓度的增加,有效排斥力显着提高。将有效的聚合物-聚合物和壁-聚合物电势相结合,以计算由SAW聚合物在两壁之间引起的耗尽相互作用。计算出的耗竭相互作用与完全聚合物段模型的计算机密集型直接模拟的“精确”结果非常吻合,并清楚地说明了基于假设的标准Asakura-Oosawa逼近在半稀释状态下的不足之处非相互作用的聚合物线圈。 (C)2001美国物理研究所。 [参考:82]

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