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Star Polymers with Tunable Attractions: Cluster Formation, Phase Separation, Reentrant Crystallization

机译:明星聚合物具有可调景点:簇形成,相分离,旋流结晶

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We consider a model to describe starlike polymers featuring a steric repulsion accompanied by a dispersion- or depletion-induced tunable attraction. The range and depth of the latter can be controlled by suitable choices of the solvent, salt concentration and/or depletant size and type, whereas the strength of the steric repulsions is set by the arm number f of the stars. We focused on star polymers with arm number f = 32. Depending on the choice of the attraction characteristics and on the temperature, the system exhibits, in addition to the usual ultra-soft repulsion, a relatively short range attraction and a secondary repulsive barrier at longer distances. Our results show a variety of structurally distinct states. In the fluid phase we find evidence for cluster formation which is accompanied by fluid-phase separation. Moreover the system presents unexpected fluid-solid transitions which are completely absent for the purely repulsive case. The dependence of the cluster and solid regions, and the location of the critical point on the potential parameters is quantitatively analyzed.
机译:我们考虑一种模型来描述具有伴随分散或耗尽引起的可调谐吸引力的空间排斥的颗粒状聚合物。后者的范围和深度可以通过合适的溶剂,盐浓度和/或脱落尺寸和型来控制,而空间排斥的强度由恒星的臂数F设定。我们专注于臂数F = 32的星形聚合物。根据吸引特性的选择和温度,系统除了通常的超软排斥,还具有相对较短的范围的吸引力和第二次扰动障碍之外距离更长。我们的结果显示了各种结构明显的状态。在流体阶段,我们发现伴有流体相分离的簇形成的证据。此外,该系统呈现出意外的流体固体过渡,这完全不适用于纯粹的排斥情况。簇和实心区域的依赖性以及势参数上的临界点的位置被定量地分析。

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