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树枝状大分子 - 聚电解质复合物的计算机模拟

Computer simulations of dendrimer-polyelectrolyte complexes.

作者信息

Pandav Gunja, Ganesan Venkat

机构信息

Department of Chemical Engineering, University of Texas at Austin , Austin, Texas 78712, United States.

出版信息

J Phys Chem B. 2014 Aug 28;118(34):10297-310. doi: 10.1021/jp505645r. Epub 2014 Aug 13.

Abstract

We carry out a systematic analysis of static properties of the clusters formed by complexation between charged dendrimers and linear polyelectrolyte (LPE) chains in a dilute solution under good solvent conditions. We use single chain in mean-field simulations and analyze the structure of the clusters through radial distribution functions of the dendrimer, cluster size, and charge distributions. The effects of LPE length, charge ratio between LPE and dendrimer, the influence of salt concentration, and the dendrimer generation number are examined. Systems with short LPEs showed a reduced propensity for aggregation with dendrimers, leading to formation of smaller clusters. In contrast, larger dendrimers and longer LPEs lead to larger clusters with significant bridging. Increasing salt concentration was seen to reduce aggregation between dendrimers as a result of screening of electrostatic interactions. Generally, maximum complexation was observed in systems with an equal amount of net dendrimer and LPE charges, whereas either excess LPE or dendrimer concentrations resulted in reduced clustering between dendrimers.

摘要

我们对在良溶剂条件下稀溶液中带电树枝状大分子与线性聚电解质(LPE)链通过络合形成的簇的静态性质进行了系统分析。我们使用单链平均场模拟,并通过树枝状大分子的径向分布函数、簇尺寸和电荷分布来分析簇的结构。研究了LPE长度、LPE与树枝状大分子之间的电荷比、盐浓度的影响以及树枝状大分子的代数。具有短LPE的体系与树枝状大分子聚集的倾向降低,导致形成较小的簇。相反,较大的树枝状大分子和较长的LPE会导致形成具有显著桥连的较大簇。由于静电相互作用的屏蔽作用,盐浓度增加会减少树枝状大分子之间的聚集。一般来说,在净树枝状大分子和LPE电荷数量相等的体系中观察到最大络合,而过量的LPE或树枝状大分子浓度会导致树枝状大分子之间的聚集减少。

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