首页> 外文期刊>Progress in Polymer Science >Theory of wormlike polymer chains in confinement
【24h】

Theory of wormlike polymer chains in confinement

机译:蠕虫状聚合物链的理论

获取原文
获取原文并翻译 | 示例
       

摘要

A semiflexible polymer chain shows characteristic local chain persistency and finite extensibility. Confinement of such a polymer introduces a confinement length scale that competes with the persistence length. This review describes the basic theoretical formalism for a single wormlike chain in an external confinement potential field and for confined wormlike chains that interact with each other through a potential energy depending on both orientational and positional variables. We present a summary of the current understanding in formulating a calculation for the free energy through a single-chain Green's function theory and multi-chain self-consistent field theory, and in specifying appropriate confinement boundary conditions. The wormlike-chain formalism has the capability to capture physical features in a length scale smaller than the persistence length and in a length scale comparable to the total chain length. It also builds the orientational dependence in the foundation of the formalism, that can be used to describe the coupled orientational and positional dependencies of many polymer problems. It has the advantage over a typical Gaussian-chain formalism for description of the physical properties where these features are the main concerns. However, the mathematical treatment of a wormlike-chain model is much more complicated than that of a Gaussian-chain model, due to the coupling between the orientational and positional degrees of freedom. It is this coupling that gives rise to physical features that are unique in semiflexible-chain systems. Example applications of the theoretical framework are also described here, on calculating the free energy and conformational properties of a confined long wormlike chain, on describing the orientational defect structures of confined liquid crystals, and on demonstrating the orientation-induced surface wetting phenomenon. (C) 2015 Elsevier Ltd. All rights reserved.
机译:半柔性聚合物链显示出特征性的局部链持久性和有限的可扩展性。这种聚合物的约束引入了约束长度尺度,该尺度与持久性长度竞争。这篇综述描述了在外部约束势场中单个蠕虫状链和通过定向能量通过相互依赖于方向和位置变量相互作用的受限蠕虫状链的基本理论形式主义。在对通过单链格林函数理论和多链自洽场理论制定自由能的计算公式以及指定适当的约束边界条件时,我们给出了当前理解的总结。蠕虫状链形式论具有捕获物理特征的能力,该特征的长度尺度小于持久性长度,并且长度尺度可与总链长度相当。它还在形式主义的基础上建立了取向依赖性,可用于描述许多聚合物问题的耦合取向和位置依赖性。与典型的高斯链形式主义相比,它在描述物理特性(这些特性是主要关注点)时具有优势。然而,由于定向和位置自由度之间的耦合,蠕虫状链模型的数学处理比高斯链模型的数学处理复杂得多。正是这种耦合产生了在半柔性链系统中独一无二的物理特征。这里还描述了理论框架的示例应用,计算受限长蠕虫状链的自由能和构象特性,描述受限液晶的取向缺陷结构以及展示了取向诱导的表面润湿现象。 (C)2015 Elsevier Ltd.保留所有权利。

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